用户名: 密码: 验证码:
新型开放骨架亚磷酸盐晶体的合成、结构与性质表征
详细信息    本馆镜像全文|  推荐本文 |  |   获取CNKI官网全文
摘要
无机开放骨架金属磷酸盐由于具有丰富多样的骨架结构和规则的孔道在气体分离、工业催化、离子交换、电学、光致发光、磁学、生物学等领域有着广泛的应用。近十几年以来,科研工作者发现使用假四面体构型的[HPO3]2-基团取代具有正四面体构型的[PO4]3-基团而开发出的开放骨架金属亚磷酸盐,具有新颖的骨架结构以及独特的性质。一系列具有特殊结构(手性及螺旋、超大孔道等特征)与新颖性质(光致发光、磁性、光电效应等)的开放骨架金属亚磷酸盐被相继报道。本论文采用水热/溶剂热方法,以不同种类的有机胺为模板剂,在亚磷酸体
     系下,利用不同种金属源,合成出了一系列新型开放骨架亚磷酸盐化合物,取得了以下研究成果:
     1.在InCl3-H3PO3-HF-T-M (T:有机胺,M:混合溶剂)合成体系中,以1,2-丙二胺为有机模板剂,溶剂热条件下,通过调控F-离子的用量,合成出两例亚磷酸铟化合物[C3H10N2][In2(HPO3)4](InHPO-CJ11)和[C3H12N2][InF(HPO3)2](InHPO-CJ12)。InHPO-CJ11是一例新颖的具有ABCABC紧密密堆积的三维(3D)结构,包含多维交叉8-元环孔道和独特的左/右手螺旋链。InHPO-CJ12是第一例含氟的亚磷酸铟化合物。有趣的是InHPO-CJ11和InHPO-CJ12的合成条件非常相似,只有氢氟酸的用量不同,而且InHPO-CJ11的结构中含有InHPO-CJ12的1D链,讨论了它们结构的相关性。
     2.利用1,2-丙二胺和六水哌嗪为模板剂,合成出两例大孔的亚磷酸铟化合物In2(HPO3)3(InHPO-CJ13)和[C4H10N2][In4(HPO3)7(H2O)3](InHPO-CJ14)。InHPO-CJ13是一例新颖的12元环孔道中性开放骨架亚磷酸铟化合物,其结构包含In2O10共面二核铟簇InHPO-CJ13结构中不含有任何有机模板剂,这在以前还没有报道过。InHPO-CJ14是一例三维交叉十二元环孔道的亚磷酸铟化合物。
     3.利用1,6-己二胺为有机模板剂,在水热体系中合成出一例三维亚磷酸锌无机有机杂化材料(C6N2H16)0.5ZnHPO3(ZnHPO-CJ15)。该化合物含有ZnO3N四面体和HPO3假四面体交替连接构建的4.82无机层,层与层间通过1,6-己二胺分子为柱撑相连接形成三维pillar-layer结构。该化合物在3D-2D-3D的拓扑学转化上有着潜在的研究价值。
     4.利用3-(氨甲基)吡啶为有机模板剂,在水热体系中合成出一例无机有机杂化的磷酸-亚磷酸盐化合物[C6H9N2][Zn2(PO4)(HPO3)](ZnHPO-CJ16)。ZnHPO-CJ16是一例含有磷酸和亚磷酸两种阴离子基团的无机有机杂化材料,有机分子3-(氨甲基)吡啶配位到无机骨架的Zn原子上,其结构含有4-8网层。由于3-(氨甲基)吡啶含有共轭体系,N原子的电荷更易跃迁到骨架上,所以ZnHPO-CJ16具有较强的荧光性质。
     5.在水热条件下,以单胺类的正庚胺为有机模板剂,合成出了一例亚磷酸锌化合物(C7H18N)2[Zn(HPO3)2](ZnHPO-CJ17)。它是一例由ZnO4正四面体和HPO3假四面体通过顶点交替连接形成的一维链结构。其中正庚胺分子的氨基与无机骨架中的氧原子之间形成氢键。ZnHPO-CJ17是第一例以单胺为模板剂合成出的一维链状亚磷酸锌。
     6.以1,4-丁二胺为有机模板剂,合成出一例具有三维pillar-layer结构的亚磷酸钴化合物(C4H12N2)[Co3(HPO3)2(OH)2](CoHPO-CJ10)。该化合物含有Co3O11N2三核钴簇和HPO3假四面体连接构建的二维层,层与层间通过1,4-丁二胺分子为柱撑相连接形成三维pillar-layer结构。该化合物是第一例具无限共边连接Co-O-Co链的亚磷酸钴,具有特殊的钴磷比(Co/P为3/2)。该化合物具有反铁磁性质。
     7.在1,2-丙二醇和水的混合溶剂条件下,以1,2-丙二胺分子为有机模板剂,合成出一例一维亚磷酸镓化合物[C3H12N2][Ga(HPO3)2(OH)](GaHPO-CJ18)。该化合物是GaO6正八面体和HPO3假四面体交替连接形成的。每个GaO6正八面体除了与两个HPO3假四面体连接外还与下一个GaO6正八面体相连构建Ga-O-Ga连接,其中氧原子除了连接两个镓原子之外,还连接一氢原子,形成羟基。GaO6正八面体之间通过顶点交替连接形成的含有无限共顶点连接Ga-O-Ga一维镓链结构。
Inorganic open-framework materials have been extensively used in manyindustrial processes, such as catalysis, adsorption and separation. Recently, a newclass of open-framework metal phosphites has been developed by employing thepyramidal phosphite units HPO2-3to replace the tetrahedral phosphate groups PO3-4.Such materials have attracted much attention due to their novel frameworkcompositions and structure features including extra-large pores, chiral and helicalstructures. These materials have potential applications in the areas of optics, magneticchemistry, electrochemistry, catalytic chemistry, etc.
     In this paper, we have hydrothermally/solvothermally synthesized a series ofmetal phosphites by using different organic amines as the templates. Main resultsinclude:
     1. Two new indium phosphites [C3H10N2][In2(HPO3)4](InHPO-CJ11) and[C3H12N2][InF(HPO3)2](InHPO-CJ12) have been solvothermally synthesized byusing1,2-propanediamine as the template. InHPO-CJ11displays a novel(3,6)-connected three-dimensional (3D) structure containing multi-directionalintersecting8-ring channels and unique left/right-handed helical chains.InHPO-CJ12has a1D chain-like structure constructed by InO6and HPO3units.Notably, the syntheses of these two compounds are similar except for the use ofhydrofluoric acid.
     2. In2(HPO3)3(InHPO-CJ13) and [C4H12N2][In4(HPO3)7(H2O)3](InHPO-CJ14) havebeen solvothermally synthesized in the presence of mixed solvents. InHPO-CJ13possesses a3D inorganic framework with12-ring channels without occludedorganic templates, which is built up by the connection of In2O10face-shareddimers and pseudo pyramidal HPO3units. InHPO-CJ14exhibits a pillar-layeredstructure with intersecting12-ring channels along [100],[010] and [110]directions.
     3. A three-dimensional (3D) inorganic–organic hybrid zinc phosphite(C6N2H16)0.5ZnHPO3(ZnHPO-CJ15) has been hydrothermally synthesized. It hasa pillar-layered structure, in which1,6-hexamethylenediamine molecules act asthe pillars to link the adjacent4.82zinc phosphite layers to construct the openframework of ZnHPO-CJ15. ZnHPO-CJ15exhibits fluorescence property.
     4.[C6H9N2][Zn2(PO4)(HPO3)](ZnHPO-CJ16) has been hydrothermally synthesizedby using3-(aminomethyl) pyridine as the organic template. Its frameworkcontains two kinds of anion groups, i.e. phosphate and phosphite. ZnHPO-CJ16possesses a two-dimensional (2D) layer structure, which is constructed by ZnO3Ntetrahedra and HPO3pseudo-pyramids.3-(aminomethyl) pyridine acts as theligands to connect the zinc atoms of inorganic framework. ZnHPO-CJ16possesses fluorescence property due to the existence of3-(aminomethyl) pyridine.
     5.(C7H18N)2[Zn(HPO3)2](ZnHPO-CJ17) has been hydrothermally synthesized inthe presence of n-heptylamine. Its structure is constructed by ZnO4tetrahedra andHPO3pseudo-pyramids. ZnHPO-CJ17is the first example of1D chain structureof zinc phosphite synthesized by using a single amine as the template.
     6.(C2H6N)[Co1.5(OH)(HPO3)](CoHPO-CJ10) is a3D inorganic-organic hybridcobalt phosphite. It exhibits a pillar-layered structure with an unusual Co/P ratioof3/2. The1,4-butanediamine molecules act as the pillars to link the adjacentcobalt phosphite layers to form open framework. Interestingly, such structurecontains infinite edge-sharing connected Co–O–Co chains, which is rarely occurred in the structures of cobalt phosphates/phosphites. It exhibitsantiferromagnetic interaction.
     7. A one-dimensional (1D) galium phosphite [C3H12N2][Ga(HPO3)(OH)2](GaHPO-CJ18) was synthesized by using1,2-propylene amine as the organictemplate. Its inorganic chain is constructed by GaO6octahedra and HPO3pseudo-pyramids. Ga-O-Ga connection mode is found in such structure.
引文
[1]徐如人,庞文琴,于吉红,等.分子筛与多孔材料化学[M].北京:科学出版社.2004
    [2] CHEETHAM A K, FEREY G, LOISEAU T. Open-framework inorganicmaterials[J]. Angewandte Chemie-International Edition,1999,38(22):3268-3292.
    [3] KAHN O.Molecular magnetism [M].New York: VCH.1993
    [4] YU J H, XU R R. Rational Approaches toward the Design and Synthesis ofZeolitic Inorganic Open-Framework Materials[J]. Accounts of ChemicalResearch,2010,43(9):1195-1204.
    [5] http://izasc.ethz.ch/fmi/xsl/IZA-SC/ft.xsl.
    [6] CRONSTEDT A F, VETENSKAPS K. Acad Handle Stockholm,[J].1756:17,120.
    [7] BARRER R M. Synthesis of a zeolitic mineral with chabazite-like sorptiveproperties [J]. J. Chem. Soc.,1948:127-132.
    [8] BRECK D W, EVERSOLE W G, MILTON R M, et al. The properties of anew synthetic zeolite, Type A Crystalline Zeolites. I. Phys.[J]. Inorg. Chem,1956,78:5963-5971.
    [9] Argauer R J, Landolt G R. US Patent [P].3,702,866,1972.
    [10] WILSON S T, LOK B M, MESSINA C A, et al. Aluminophosphate molecularsieves: a new class of microporous crystalline inorganic solids[J]. Journal ofthe American Chemical Society,1982,104(4):1146-1147.
    [11] JONES R H, TNOMAS J. M, XU R. R, et al. Synthesis and structure of anovel aluminium phosphate anion:(Al3P4O16)3-[J]. Journal of the ChemicalSociety[J]. Chemical Communications,1991,18:1266-1268.
    [12] OLIVER S, KUOERMAN A, LOUGH A, et al. Aluminophosphatechain-to-layer transformation[J]. Chemistry of Materials,1996,8(9):2391-2398.
    [13] KONGSHAUG K. O, FJELLVAG H, Lillerrud P K. LayeredaluminophosphatesⅡ. crystal structure and thermal behaviour of the layeredaluminophosphate UiO-15and its high temperature variants[J]. Journal ofMaterials Chemistry,1999,9(7):1591-1598.
    [14] HUO Q S, XU R R, LI S G, et al. Synthesis and characterization of a novelextra large ring of aluminophosphate JDF-20[J]. Journal of the ChemicalSociety, Chemical Communications,1992:875-876.
    [15] JONES R H, THOMAS J M, CHEN J, et al. Structure of an unusualaluminium phosphate ([Al5P6O24H][N(C2H5)3H]2·2H2O) JDF-20with largeelliptical apertures[J]. Journal of Solid State Chemistry,,1993,102:204-208.
    [16] PARISE J B. Preparation and structural characterization of twometallophosphate frameworks clathrating diprotonated ethylenediamine:AlPO4-12(en) and GaPO4-12(en)[J]. Inorganic Chemistry,1985,24:4312-4316.
    [17] YANG G, H F S, XU R R Crystal structure of the gallophosphate framework:X-ray characterization of Ga9P9O36OH·HNEt3[J]. Journal of the ChemicalSociety, Chemical Communications,1987:1254-1255.
    [18] WANG T, YANG G, FENG S, et al. A novel mixed octahedral–tetrahedralframework: X-ray characterization of a microporous gallophosphate,Ga2P2O8(OH)H2O·NH4·H2O·0.16PrOH (GaPO4-C7)[J]. Journal of theChemical Society, Chemical Communications,1989:948-949.
    [19] FENG S, XU X, YANG G, et al. Hydrothermal synthesis and crystal structureof the microporous gallophosphate
    [NH4]4[Ga8P8O32(OH)4(H2O)4]·4H2O·0.64PrOH with an octahedral–tetrahedral framework [J]. Journal of the Chemical Society, DaltonTransactions,1995:2147-2149.
    [20]霍启升,吉林大学博士学位论文[D].1992.
    [21] ESTERMANN M. E, MCCUSKER L. B, BOELOCHER C, et al. A syntheticgallophosphate molecular sieve with a20-tetrahedral-atom pore opening[J].Nature Methods,1991,352:320-323.
    [22] LOISEAU T, F REY G. Oxyfluorinated Microporous Compounds: VII.Synthesis and Crystal Structure of ULM-5, a New Fluorinated GallophosphateGa16(PO4)14(HPO4)2(OH)2F7·[H3N(CH2)6NH3]4·6H2O with16-MemberedRings and Both Bonding and Encapsulated F1[J]. Journal of Solid StateChemistry,1994,111:403-415.
    [23] SASSOYE C, LOISEAU T, TAULELLE F, et al. A new open-frameworkfluorinated gallium phosphate with large18-ring channels (MIL-31)[J].Chemical Communications,2000:943-944.
    [24] WALTON R I, MILLANGE F, LOISEAU T, et al. Crystallization of aLarge-Pore Three-Dimensional Gallium Fluorophosphate under MildConditions [J]. Angewandte Chemie International Edition,2000,39:4552-4555.
    [25] LIN C H, WANG S L, LII K H.[Ga2(DETA)(PO4)2]·2H2O (DETA=Diethylenetriamine): A Novel Porous Gallium Phosphate Containing24-Ring Channels[J]. Journal of the American Chemical Society,2001,123:4649-4650.
    [26] DHINTRA S S, HAUSHALTER R C. Hydrothermal synthesis and crystalstructure of H3NCH2CH2NH3[In2(HPO4)4] a novel octahedral-tetrahedralframework indium phosphate with occluded organic cations[J]. Journal of theChemical Society, Chemical Communications,1993,21:1665-1667.
    [27] THIRUMURGAN A, NATARAJAN S. Synthesis and structure of a newthree-dimensional indium phosphate with16-membered one-dimensionalchannels[J]. DaltonTrans,2003:3387–3391.
    [28] CHIPPINDALE A M, BRECH S J, COWLEY A R, et al. Novel pillared layerstructure of the organically templated indium phosphate
    [In8(HPO4)14(H2O)6](H2O)5(H3O)(C3N2H5)3[J]. Chemistry of Materials,1996,8(9):2259-2264.
    [29] MAO S Y, LI M R, HUANG Y X, et al. Hydrothermal synthesis and crystalstructure of the first ammonium indium(Ⅲ) phosphate NH4In(OH)PO4withspiral chains of InO4(OH)2[J]. Journal of Solid State Chemistry,2002,165(2):209-213.
    [30] LII K H. RbIn(OH)PO4: An indium(Ⅲ) phosphate containing spirals ofcorner-sharing InO6octahedra[J]. Journal of the Chemical Society, DaltonTransactions1996,6:815-818.
    [31] YANG G, SEVOV S. C Zinc Phosphate with Gigantic Pores of24Tetrahedra[J]. Journal of the American Chemical Society,1999,1218389-8390.
    [32] RODGERS J A, HARRISON W T A.H3N(CH2)6NH3·Zn4(PO4)2(HPO4)2·3H2O: a novel three-dimensional zincphosphate framework containing5-and20-rings[J]. Journal of MaterialsChemistry,2000,10:2853-2856.
    [33] NEERAJ S, NATARAJAN S, RAO C N R. A novel open-framework zincphosphate with intersecting helical channels[J]. Chem. Commun,1999:165–166.
    [34] MACDONALD I, HARRISON W T A. C4N3OH7·Zn(H2O)HPO4, a NeutralZincophosphate Cluster[J]. Inorganic Chemistry,2002,41:6184-6486.
    [35] RAO C N R, NATARAJAN S, NEERAJ S. Exploration of a simple universalroute to the myriad of open-framework metal phosphates[J]. Journal of theAmerican Chemical Society,2000,122(12):2810-2817.
    [36] AYI A A, CHOUDHURY A, NATARAJAN S, et al. Transformations oflow-dimensional zinc phosphates to complex open-framework structures. Part1: zero-dimensional to one-, twoand three-dimensional structures[J]. J. Mater.Chem,2001,11:1181-1191.
    [37] NEERAJ S., NATARAJAN S, RAO C N R. Amine Phosphates asIntermediates in the Formation of Open-Framework Structures[J]. Angew.Chem. Int. Ed.,1999,38:3480-3483.
    [38] PATARIN J, MARLER B, HUVE L. Synthesis and structure ofZn(H2PO4)2(HPO4)·H2N2C6H12[J]. Eur. J. Solid State Inorg. Chem.,1994,31:909-920.
    [39] HARRISON W T A, PHILLIPS M L. Hydrothermal syntheses andsingle-crystal structures of some novel guanidinium-zinc-phosphates[J].Chemistry of Materials,1997,9(8):1837-1846.
    [40] CHOUDHURY A, NEERAJ S, NATARAJAN S, et al. Transformations of thelow-dimensional zinc phosphates to complex open-framework structures. Part2: Part1=reference9b. one-dimensional ladder to two-and three-dimensionalstructures[J]. Journal of Materials Chemistry,2001,11(5):1537-1546.
    [41] CHOUDHURY A, NEERAJ S, NATARAJAN S, et al. Transformations oftwo-dimensional layered zinc phosphates to three-dimensional andone-dimensional structures[J]. Journal of Materials Chemistry,2002,12(4):1044-1052.
    [42] CHIDAMBARAM D, NEERAJ S, NATARAJAN S, et al. Open-frameworkzinc phosphates synthesized in the presence of structure-directing organicamines[J]. Journal of Solid State Chemistry,1999,147(1):154-169.
    [43] NEERAJ S, NATARAJAN S, RAO C N R. Amine Phosphates asIntermediates in the Formation of Open‐Framework Structures[J].Angewandte Chemie International Edition,1999,38(23):3480-3483.
    [44] YU J H, WANG Y, SHI Z, et al. Hydrothermal Synthesis and Characterizationof Two New Zinc Phosphates Assembled about a Chiral Metal Complex:
    [CoII(en)3]2[Zn6P8O32H8] and [CoIII(en)3][Zn8P6O24Cl]·2H2O[J]. Chem Mater,2001,13(9):2972-2978.
    [45] XING Y, LIU Y, SHI Z, et al. Synthesis and Structure of a Novel LayeredZincophosphate Zn4P3O11(OH)3C3N2H4with Organic Amine Acting asLigand[J]. Journal of Solid State Chemistry,2002,163(2):364-368.
    [46] HARRISON W T A, PHILLIPS M L, CLEGG W, et al.(CN3H6)2Zn4H5(PO4)5,a New Layered Guanidinium Zinc Phosphate Built Up from3-,4-, and8-RingUnits[J]. Journal of Solid State Chemistry,1999,148(2):433-437.47] WANG Y, YU J H, GUO M, et al.{Zn2(HPO4)4}{Co(dien)2}·H3O: A zincphosphate with multidirectional intersecting helical channels[J]. AngewandteChemie-International Edition,2003,42(34):4089-4092.
    [48] AYI A A, CHOUDHURY A, NATARAJAN S, et al. Solution-mediatedsynthesis of a three-dimensional zinc phosphate in the presence of amonoamine[J]. Journal of Materials Chemistry,2000,10(11):2606-2608.
    [49] CHAVEZ A V, NENOFF T M, HANNOOMAN L, et al. Tetrahedral-NetworkOrgano-zincophosphates: Syntheses and Structures of(N2C6H14)Zn(HPO4)2H2O, H3N(CH2)3NH3Zn2(HPO4)3,and(N2C6H14)Zn3(HPO4)4[J]. Journal of Solid State Chemistry,1999,147(2):584-591.
    [50] NEERAJ S, RAO C N R, CHEETHAM A K. Open-framework zinc and cobaltphosphates synthesized by the tributylphosphate route[J]. Journal of MaterialsChemistry,2004,14(5):814-820.
    [51] HARRISON W T A, NENOFF T M, EDDY M M, et al. Organic templates inzincophosphate synthesis: Zn5(PO4)2(HPO4)4·H2O·2H2N2C6H12, containingtwo distinct eight-ring channels and Zn3(PO4)(HPO4)2·HN2C6H12, containingtetrahedral three-rings and Zn–N bonds[J]. Journal of Materials Chemistry,1992,2(11):1127-1134.
    [52] HARMON S B, SEVOV S C. Synthesis and Characterization of a NewThree-Dimensional Organically Templated Zinc Phosphate,Zn6(PO4)4(HPO4)(H2O)(H3NCH2CH2NH3), with a Chain of Corner-LinkedZnO4Tetrahedra[J]. Chemistry of Materials,1998,10(10):3020-3023.
    [53] HARRISON W T A, GIER T E, MORAN K L, et al. Structures and propertiesof new zeolite X-type zincophosphate and beryllophosphate molecularsieves[J]. Chemistry of Materials,1991,3(1):27-29.
    [54] KAHN M I, MEYER L M, HAUSHALTER R C, et al. Giant voids in thehydrothermally synthesized microporous square pyramidal-tetrahedralframework vanadium phosphates [HN(CH2CH2)3NH]K1.35[V5O9(PO4)2]·xH2Oand Cs3[V5O9(PO4)2]·xH2O [J]. Chemistry of Materials,1996,8:43-53.
    [55] MOORE P B. An X-Ray structureal study of cacoxenite, a mineralphosphate[J]. Nature,1983,306:356-358.
    [56] GUILLOU N, GAO Q, NOGUES M, et al. Zeolitic and magnetic properties ofa24-membered ring porous nickel(II) phosphate, VSB-1[J]. C. R. Acad. Sci.Paris,1999,2:387-392.
    [57] GUILLOU N, GAO Q, FORSTER P M, et al. Nickel(ii) phosphate VSB-5: Amagnetic nanoporous hydrogenation catalyst with24-ring tunnels[J]. Angew.Chem. Inter. Ed,2001,113:2913-2915.
    [58] NATARAJAN S, MANDAL S Open-framework structures of transition-metalcompounds[J]. Angewandte Chemie-International Edition,2008,47(26):4798-4828.
    [59] SHIEH M., MARTIN K J., SQUATTRITO P. J., et al. NewLow-Dimensional Zinc Compounds Containing Zinc-Oxygen-PhosphorusFrameworks: Two-Layered Inorganic Phosphites and a Polymeric OrganicPhosphinate[J]. Inorganic Chemistry,1990,29:958-963.
    [60] BONAVIA G, DEBORD J, HAUSHALTER R C, et al. Hydrothermalsynthesis and charachcterization of2-and3-dimensonnal solids of theoxovandium(IV)-phosphite system the structures ofHN(ME)(CH2CH2)2N(ME)H(VO)4(OH)2(HPO3)4, H2N(CH2CH2)2NH2(VO)3(HPO3)4(H2O)2, and VO(HPO3)(H2O)[J]. Chemistry of Materials,1995,7(11):1995-1998.
    [61] LI N, XIANG S H. Hydrothermal synthesis and crystal structure of two novelaluminophosphites containing infinite Al–O–Al chains[J]. Journal of MaterialsChemistry,2002,12:1397-1400.
    [62] FERNANDEZ S, PIZARRO J L, MESA J L, et al. Hydrothermal synthesis ofa new layered inorganic-organic hybrid cobalt(II) phosphite:(C2H10N2)Co3(HPO3)4crystal structure and spectroscopic and magneticproperties[J]. International Journal of Inorganic Materials,2001,3(4-5):331-336.
    [63] FERNANDEZ S, MESA J L, PIZARRO J L, et al. Magnetic behavior ofinorganic-organic hybrid phosphite compounds with3-d transition metals[J].Journal of Magnetism and Magnetic Materials,2004,272:1113-1115.
    [64] FERNANDEZ S, MESA J L, PIZARRO J L, et al.(C2H10N2)Cr(HPO3)F3:The first organically templated fluorochromium(III) phosphite[J]. AngewandteChemie-International Edition,2002,41(19):3683-3685.
    [65] FERNANDEZ S, MESA J L, PIZARRO J L, et al. Hydrothermal synthesis,crystal structures, spectroscopic, and magnetic properties of two neworganically templated monodimensional phosphite compounds:(C2H10N2)M(HPO3)F3, M=V(III) and Cr(III)[J]. Chemistry of Materials,2003,15(5):1204-1209.
    [66] FERNANDEZ S, MESA J L, PIZARRO J L, et al. Two new three-dimensionalvanadium(III) and iron(III) phosphites templated by ethylenediamine:(C2H10N2)0.5M(HPO3)2ab initio structure determination, spectroscopic, andmagnetic properties[J]. Chemistry of Materials,2002,14(5):2300-2307.
    [67] CHUNG U C, MESA J L, PIZARRO J L, et al. A new layered organicallytemplated iron(II) phosphite,(C2H10N2)Fe3(HPO3)4. Hydrothermal synthesis,crystal structure and spectroscopic and magnetic properties[J]. Journal of SolidState Chemistry,2004,177(8):2705-2713.
    [68] FERNANDEZ-ARMAS S, MESA J L, PIZARRO J L, et al.(C4N2H12)(Fe0.86Fe1.14III)FeII(HPO3)1.39(HPO4)0.47(PO4)0.14F3: Afluoro-phosphite-hydrogenphosphate-phosphate iron(II,III) mixed-valenceorganically templated compound[J]. Angewandte Chemie-InternationalEdition,2004,43(8):977-980.
    [69] FAN Y, SONG T Y, LI G H, et al. Hydrothermal synthesis, crystal structures,and magnetic properties of a novel three-dimensional iron phosphite: NH4(Fe2FeIII) FeII(HPO3)4[J]. Inorganic Chemistry Communications,2005,8(8):661-664.
    [70] FERNANDEZ-ARMAS S, MESA J L, PIZARRO J L, et al. Two newtwo-dimensional organically templated phosphite compounds:(C6H16N2)0.5M(HPO3)F, M=Fe(II) and Co(II): Solvothermal synthesis, crystalstructures, thermal, spectroscopic, and magnetic properties[J]. Journal of SolidState Chemistry,2005,178(11):3554-3562.
    [71] LIU W, CHEN H H, YANG X X, et al. Two novel transition-metal phosphitecompounds with4-,6-and12-membered rings: Hydrothermal syntheses,crystal structures and magnetic properties of Na2M(HPO3)2(M=Fe, Co)[J].European Journal of Inorganic Chemistry,2005(5):946-951.
    [72] MANDAL S, GREEN M A,NATARAJAN S Synthesis, structure and magneticproperties of a new one-dimensional iron phosphite,FeIII(1,10-phenanthroline)(HPO3)(H2PO3)[J]. Current Science,2005,89(11):1899-1903.
    [73] MANDAL S, PATI S K, GREEN M A, et al. The first one-dimensional ironphosphite-phosphate, FeIII(2,2'-bipyridine)(HPO3)(H2PO4): Synthesis,structure, and magnetic properties[J]. Chemistry of Materials,2005,17(3):638-643.
    [74] MANDAL S, PATI S K, GREEN M A, et al. Inorganic-organic hybridcompounds: Synthesis, structure, and magnetic properties of the firstorganically templated iron oxalate-phosphite,(C4N2H12)Fe4II(HPO3)2(C2O4)3,possessing infinite Fe-O-Fe chains[J]. Chemistry of Materials,2005,17(11):2912-2917.
    [75] FERNANDEZ S, MESA J L, PIZARRO J L, et al. A new layeredinorganic-organic hybrid manganese(II) phosphite:(C2H10N2)Mn3(HPO3)4.Hydrothermal synthesis, crystal structure, and spectroscopic and magneticproperties[J]. Chemistry of Materials,2000,12(8):2092-2098.
    [76] LIN Z E, ZHANG J, ZHENG S T, et al. Synthesis and characterization of anovel open-framework nickel zinc phosphite with intersectingthree-dimensional16-ring channels[J]. Journal of Materials Chemistry,2004,14(10):1652-1655.
    [77] LIANG J, LI J Y, YU J H, et al. Synthesis and characterization of two newopen-framework zinc phosphites M(C6N4H18)Zn3(HPO3)4(M=Ni, Co) withmulti-directional intersecting12-membered ring channels[J]. Journal of SolidState Chemistry,2005,178(9):2673-2679.
    [78] HARRISON W T A (CN3H6)2·(VO)3(H2O)3(HPO3)4·3H2O, a guanidiniumvanadium phosphite hydrate based on a (3,4) connected net: an "OrthogonalTemplating" effect?[J]. Solid State Sciences,2003,5(2):297-302.
    [79] SHI Z, LI G H, ZHANG D, et al. A vanadium(IV) phosphite with a pillaredlayered structure: Hydrothermal synthesis and characterization of(VO)4(4,4'-bPY)2(HPO3)4[J]. Inorganic Chemistry,2003,42(7):2357-2361.
    [80] SHI Z, ZHANG D, LI G H, et al. Hydrothermal synthesis and characterizationof layered vanadium phosphite: HN(C2H4)3N(VO)2(HPO3)2(OH)(H2O)·H2O[J].Journal of Solid State Chemistry,2003,172(2):464-470.
    [81] SHI S H, WANG L, YUAN H M, et al. Hydrothermal synthesis andcharacterization of a new3D vanadium(III) phosphite(C4H8N2H4)0.5(C4H8N2H3)V4(HPO3)7(H2O)3·1.5H2O[J]. Journal of Solid StateChemistry,2004,177(11):4183-4187.
    [82] WANG L, SHI S H, XU J N, et al. Hydrothermal synthesis, crystal structureand characterization of a new three-dimensional vanadium(III) phosphite[J].Chemical Journal of Chinese Universities-Chinese,2004,25(12):2215-2217.
    [83] CHIANG R K, CHUANG N T Hydrothermal synthesis and structurecharacterization of a new3D vanadium hydrogen phosphite with14-ringchannels:(C5N2H14)VO(H2O)3(HPO3)4·H2O[J]. Journal of Solid StateChemistry,2005,178(10):3040-3045.
    [84] DONG W S, BARTLEY J K, SONG N X, et al. Synthesis and characterizationof vanadyl hydrogen phosphite hydrate[J]. Chemistry of Materials,2005,17(10):2757-2764.
    [85] FU W S, LI G H, WANG L, et al. Hydrothermal synthesis and characterizationof a vanadium(IV) phosphate phosphite with two-dimensional layeredstructures: V2O2(OH)(HPO3)(HPO3)0.7(PO3OH)0.3·(C6N2H16)0.5[J]. ChemicalJournal of Chinese Universities-Chinese,2005,26(9):1607-1609.
    [86] ZHANG D, YUE H J, SHI Z, et al. Synthesis, structure and magneticcharacterization of a vanadium(IV) phosphite,C2N2H10·(VO)3(H2O)(HPO3)4·H2O[J]. Microporous and MesoporousMaterials,2005,82(1-2):209-213.
    [87] CHANG W K, WUR C S, WANG S L, et al. Hydrothermal synthesis andcharacterization of two cobalt phosphates based on double-four-ring units withfluorine-occlusion and phosphite-substitution modifications[J]. InorganicChemistry,2006,45(17):6622-6627.
    [88] FAN J, YEE G T, WANG G B, et al. Syntheses, structures, and magneticproperties of inorganic-organic hybrid cobalt(II) phosphites containingbifunctional ligands[J]. Inorganic Chemistry,2006,45(2):599-608.
    [89] LIN Z E, FAN W, GAO F F, et al. A novel layered bimetallic phosphiteintercalating with organic amines: Synthesis and characterization ofCo(H2O)4Zn4(HPO3)6·C2N2H10[J]. Journal of Solid State Chemistry,2006,179(3):723-728.
    [90] XU J F, LI H H, CAO Y N, et al. Synthesis and characterization of two neworganically templated open-framework uranium phosphites[J]. ChineseJournal of Structural Chemistry,2006,25(11):1380-1386.
    [91] LI N, MA Y F, XIANG S H, et al. Capturing an AluminophosphiteIntermediate in the New Route of Synthesizing Zeolite-likeAluminophosphates[J]. Chem. Mater,2006,18:975-980.
    [92] CHUNG U C, MESA J L, PIZARRO J L, et al. Structural, thermal,spectroscopic, specific-heat, and magnetic studies of(C5H18N3)Fe3(HPO3)6·3H2O: A new organically templated iron(III) phosphitewith a pillared structure formed by the interpenetration of two subnets[J].Inorganic Chemistry,2006,45(22):8965-8972.
    [93] FAN Y, LI G H, YU G H, et al. Hydrothermal synthesis and structurescharacterization of a novel three-dimensional iron phosphite:(HII3O)2·Fe5(HPO3)6[J]. Chemical Journal of Chinese Universities-Chinese,2006,27(1):1-4.
    [94] FERNANDEZ-ARMAS S, MESA J L, PIZARRO J L, et al. Parametrizationof the magnetic behavior of the triangular spin ladder chains organicallytemplated:(C2N2H10)M(HPO3)F3(M-III=Fe, Cr, and V). Crystal structureand thermal and spectroscopic properties of the iron(III) phase[J]. InorganicChemistry,2006,45(8):3240-3248.
    [95] RODGERS J A, HARRISON W T A Ethylenediamine zinc hydrogenphosphite,(H2N(CH2)2NH2)0.5·ZnHPO3, containing two independent,interpenetrating, mixed inorganic/organic networks[J]. ChemicalCommunications,2000(23):2385-2386.
    [96] WANG Y, YU J H, DU Y, et al. Hydrothermal synthesis and characterizationof a new inorganic-organic hybrid layered zinc phosphate-phosphite(C6H15N2)2Zn4(PO4)2(HPO3)2[J]. Journal of the Chemical Society-DaltonTransactions,2002(21):4060-4063.
    [97] PHILLIPS M L F, NENOFF T M, THOMPSON C T, et al. Variations on the(3,4)-net motif in organo-zincophosphite chemistry: Syntheses and structuresof (CN3H6)2Zn3(HPO3)4·H2O and H3N(CH2)3NH3Zn3(HPO3)4·H2O[J]. Journalof Solid State Chemistry,2002,167(2):337-343.
    [98] LIANG J, WANG Y, YU J H, et al. Synthesis and structure of a new layeredzinc phosphite (C5H6N2)Zn(HPO3) containing helical chains[J]. ChemicalCommunications,2003(7):882-883.
    [99] DONG W J, LI G H, SHI Z, et al. Hydrothermal synthesis and structuralcharacterization of an organically-templated zincophosphite:(C4N2H12)0.5·Zn3(HPO3)4·H3O[J]. Inorganic Chemistry Communications,2003,6(6):776-780.
    [100] WANG Y, YU J H, LI Y, et al.(C6H16N2)Zn3(HPO3)4·H2O: a new layered zincphosphite templated by diprotonated trans-1,4-diaminocyclohexane[J]. Journalof Solid State Chemistry,2003,170(2):303-307.
    [101] LIN Z E, ZHANG M, ZHENG S T, et al. A novel open-framework zincphosphite, Zn3(HPO3)4Ni(en)2·(H2O)2, templated by a transition-metalcomplex[J]. European Journal of Inorganic Chemistry,2004(5):953-955.
    [102] JOHNSTONE J A, HARRISON W T A Triethanolamine zinc phosphite,(C6H13NO3)Zn2(HPO3): A templated network or a network of clusters?[J].Inorganic Chemistry,2004,43(15):4567-4569.
    [103] LIN Z E, ZHANG J, ZHENG S T, et al. Synthesis and characterization of anew hybrid zinc phosphite (4,4'-bipy)Zn(HPO3)2with a pillared layerstructure[J]. Microporous and Mesoporous Materials,2004,68(1-3):65-70.
    [104] PAN H X, ZHENG S T, YANG G Y Synthesis and characterization of a newinorganic-organic hybrid open-framework zinc phosphite:(C6N3H12)2·Zn5(HPO3)6[J]. Microporous and Mesoporous Materials,2004,75(1-2):129-133.
    [105] KIRKPATRICK A, HARRISON W T A Two zincophosphite frameworkstemplated by1,4-diaminobenzene: syntheses and structures of(C6N2H10)·Zn(HPO3)2and (C6N2H8)0.5·ZnHPO3[J]. Solid State Sciences,2004,6(6):593-598.
    [106] WANG L, SHI Z, FU W S, et al. Hydrothermal synthesis and structuralcharacterization of two organically templated zincophosphites withthree-dimensional frameworks,(C6H14N2)·Zn3(HPO3)4and(C4H12N2)·Zn3(HPO3)4[J]. Journal of Solid State Chemistry,2004,177(1):80-88.
    [107] ZHANG D, SHI Z, DONG W, et al. Hydrothermal synthesis and structuralcharacterization of novel organically templated zincophosphites:C6H4(CH2NH3)2·Zn3(HPO3)4and (CH3CH2CH2NH3)2Zn3(HPO3)4[J]. Journalof Solid State Chemistry,2004,177(1):343-349.
    [108] CHEN X X, WANG Y, YU J H, et al.(C6H17N3)Zn4(PO4)2(HPO3)2: a newlayered zinc phosphate-phosphite templated by1-(2-Aminoethyl)piperazine[J]. Journal of Solid State Chemistry,2004,177(7):2518-2522.
    [109] SHI S H, WEI Q, LI G H, et al. Building three-dimensional metal phosphitesfrom the corner-shared four-membered rings chain[J]. Journal of Solid StateChemistry,2004,177(9):3038-3044.
    [110] CHEN W B, LI N,XIANG S H Zn3(HPO3)4·Zn(H2O)6: a purely inorganicopen-framework zincophosphite with octahedral zinc complex Zn(H2O)62+encapsulating in the channels[J]. Journal of Solid State Chemistry,2004,177(9):3229-3234.
    [111] FU W S, SHI Z, LI G N, et al. Synthesis and characterization of anorganically-templated zincophosphite: C6H16N2·Zn-3(HPO3)(4)[J]. SolidState Sciences,2004,6(2):225-228.
    [112] LIN Z E, ZHANG J, ZHENG S T, et al. Synthesis and characterization oforganically templated zinc phosphites with two-and three-dimensionalstructures,(C2N2H10)Zn2(HPO3)3and(C4N2H12)Zn3(HPO3)4[J]. Solid StateSciences,2004,6(4):371-376.
    [113] PAN J X, ZHENG S T,YANG G Y Syntheses and characterization of two newopen-framework zinc Phosphites with12-ring channels,H3N(CH2)4NH3·Zn3(HPO3)4·H2O and (C3N2H5)2·Zn3(HPO3)4[J]. CrystalGrowth&Design,2005,5(1):237-242.
    [114] FAN J, SLEBODNICK C, TROYA D, et al. Five new zinc phosphitestructures: Tertiary building blocks in the construction of hybrid materials[J].Inorganic Chemistry,2005,44(8):2719-2727.
    [115] ZHANG D, SHI Z, YUE H J, et al. Hydrothermal synthesis and structuralcharacterization of novel organically templated zincophosphites:H2mpipe·Zn3(HPO3)4and H2en1.5·Zn4.5(HPO3)6(mpipe=1-methylpiperazineand en=ethylenediamine)[J]. Inorganica Chimica Acta,2005,358(2):265-270.
    [116] ZHANG D, YUE H J, SHI Z, et al. Hydrothermal synthesis and structuralcharacterization of organically templated zincophosphites:(C6H22N4)0.5Zn2(HPO3)3and C3N2H5·Zn1.5(HPO3)2[J]. Solid State Sciences,2005,7(10):1256-1260.
    [117] LI L, CHAO C, MENG H, et al. Hydrothermal synthesis and characterizationof a novel zinc phosphite compound[J]. Chemical Journal of ChineseUniversities-Chinese,2005,26(10):1783-1786.
    [118] CHEN L, BU X H Histidine-controlled two-dimensional assembly of zincphosphite four-ring units[J]. Chemistry of Materials,2006,18(7):1857-1860.
    [119] LIANG J, LI J Y, YU J H, et al.(C4H12N)2Zn3(HPO3)4: An open-frameworkzinc phosphite containing extra-large24-ring channels[J]. AngewandteChemie-International Edition,2006,45(16):2546-2548.
    [120] FAN H, SLEBODNICK C,HANSON B E A tetranuclear zinc cluster,(bipy)4Zn4(HPO3)4, that stabilizes a hydrogen bonded chain of watermolecules: Transformation of a zinc phosphite4-ring to a cluster[J]. InorganicChemistry Communications,2006,9(1):103-106.
    [121] LIU L, LIU Y L, LI G H, et al. Zn2(HPO3)2(H2PO3)(C3H5N2) andZn2(HPO3)3(C4H7N2)2·2H2O: Two new layered zinc phosphites with double12-membered rings templated by imidazole and2-methylimidazole[J]. Journalof Solid State Chemistry,2006,179(5):1312-1317.
    [122] ZHANG D, YUE H J, SHI Z, et al. Hydrothermal synthesis and structuralcharacterization of organically templated zincophosphites: Zn(C4N3H13)Zn4(HPO3)6·(C4N3H15) and Zn5(H2O)4(HPO3)6·(C7NH10)2(H2O)[J]. Solid StateSciences,2006,8(2):192-196.
    [123] MANDAL S, NATARAJAN S Synthesis of open-framework zinc phosphitestructures of varying dimensionality[J]. Solid State Sciences,2006,8(3-4):388-396.
    [124] HU L M, FAN J, SLEBODNICK C, et al. Structural diversity in4,4'-trimethylenedipyridine-zinc phosphite hybrids: Incorporation of neutralguest molecules in hybrid materials[J]. Inorganic Chemistry,2006,45(19):7681-7688.
    [125] LIN Z E, FAN W, GAO F F, et al. A new organically templated zinc phosphitesynthesized in phosphorous acid flux and its hydrothermal analogue[J].Crystal Growth&Design,2006,6(11):2435-2437.
    [126] CHEN L, BU X H (3,4)-connected zincophosphites as structural analogues ofzinc hydrogen phosphate[J]. Inorganic Chemistry,2006,45(12):4654-4660.
    [127] LIANG J, LI J Y, YU J H, et al. Ni(C6N2H14)2Zn4(H2O)(HPO3)5: A newopen-framework zinc phosphite with intersecting8-,12-and16-ringchannels[J]. Journal of Solid State Chemistry,2006,179(7):1977-1983.
    [128] LAI Y L, LII K H,WANG S L26-ring-channel structure constructed frombimetal phosphite helical chains[J]. Journal of the American Chemical Society,2007,129(17):5350-5351.
    [129] LIN Z E, FAN W, GU J L, et al. Crystal structures and spectroscopicproperties of a new zinc phosphite cluster and an unexpected chainlike zincphosphate obtained by hydrothermal reactions[J]. Journal of Solid StateChemistry,2007,180(3):981-987.
    [130] YANG Y, ZHAO Y N, YU J G, et al. Doping-induced structure variation of1,3-cyclohexane-bis(methylamine)-templated zinc-phosphorus openstructures[J]. Inorganic Chemistry,2008,47(3):769-771.
    [131] MANDAL S, NATARAJAN S Synthesis, structure, and polymorphism studiesin amine-templated open-framework zinc phosphites[J]. Inorganic Chemistry,2008,47(12):5304-5313.
    [132] LIU L, ZHANG L R, WANG X F, et al. Syntheses and structures of two chiralzincophosphite compounds: Zn(C8H8N2)(HPO3) and(C6H13N2)Zn3(C6H12N2)(HPO3)3(H2PO3)[J]. Dalton Transactions,2008(15):2009-2014.
    [133] QIAO J, ZHANG L R, LIU L, et al. Solvothermal synthesis and structure of anovel3D zincophosphite Co(en)3Zn4(HPO3)5(H2PO3) containing helicalchains[J]. Journal of Solid State Chemistry,2008,181(11):2908-2913.
    [134] YANG Y, ZHAO Y N, YU J G, et al. Template syntheses of twoopen-framework zinc phosphites[J]. Zeitschrift Fur Anorganische UndAllgemeine Chemie,2008,634(10):1780-1784.
    [135] LIN Z E, NAYEK H P,DEHNEN S Transformation of a Layered ZincPhosphite to a Three-Dimensional Open-Framework Structure withIntersecting16-and12-Ring Channels[J]. Inorganic Chemistry,2009,48(8):3517-3519.
    [136] LIU L, WANG X F, LIU Y L, et al. Solution-mediated syntheses andcharacterizations of two new zincophosphites (C6H14N2)0.5Zn(H2PO3)2and(C4H12N2)0.5(CH3)2NH2Zn2(HPO3)3[J]. Inorganica Chimica Acta,2009,362(11):4053-4058.
    [137] LIN Z E, DEHNEN S Flux synthesis of (3,4)-connected zinc phosphites withdifferent framework topologies[J]. Journal of Solid State Chemistry,2009,182(11):3143-3148.
    [138] LIN Z E, NAYEK H P,DEHNEN S Flux synthesis of three-dimensionalopen-framework zinc phosphite and manganese phosphite-oxalate with12-ring channels[J]. Microporous and Mesoporous Materials,2009,126(1-2):95-100.
    [139] LIU X C, XING Y, LIU L, et al. Synthesis and Characterization of anInorganic-Organic Hybrid Layered Zinc Phosphite (C2H3N3)Zn(HPO3)[J].Zeitschrift Fur Anorganische Und Allgemeine Chemie,2009,635(2):361-364.
    [140] LUO X C, GONG M C, CHEN Y Q, et al. Flux synthesis of two newopen-framework zinc phosphites with16-ring channels[J]. Microporous andMesoporous Materials,2010,131(1-3):418-422.
    [141] FENG J D, SHAO K Z, TANG S W, et al. Ionothermal synthesis of a newopen-framework zinc phosphite NIS-3with low framework density[J].Crystengcomm,2010,12(5):1401-1403.
    [142] DONG Z J, ZHAO L, LIANG Z Q, et al. Zn(HPO3)(C11N2O2H12) andZn3(H2O)(PO4)(HPO4)(C6H9N3O2)2(C6H8N3O2): homochiral zincphosphite/phosphate networks with biofunctional amino acids[J]. DaltonTransactions,2010,39(23):5439-5445.
    [143] SONG D S, SU D P, FU Z Y, et al. Synthesis, characterization, and catalyticbehavior of two open-framework zinc phosphites with2D and3D structures[J].Inorganic Chemistry Communications,2011,14(1):150-154.
    [144] TIAN J M, LI B, ZHANG X Y, et al. Transition metal phosphite complexes:from one-dimensional chain, two-dimensional sheet, to three-dimensionalarchitecture with unusual magnetic properties[J]. Crystengcomm,2014,16:1071-1078.
    [145] HARRISON W T A H3N(CH2)3NH3·Zn(HPO3)2containing four-ring chains ofZnO4tetrahedra and HPO3pseudo pyramids[J]. International Journal ofInorganic Materials,2001,3(2):187-189.
    [146] HARRISON W T A, PHILLIPS M L F, NENOFF T M, et al.(CN3H6)2Zn(CO3)2, the first organically templated open-frameworkcarbonate[J]. Journal of the Chemical Society-Dalton Transactions,2001(5):546-549.
    [147] HARRISON W T A, PHILLIPS M L F, STANCHFIELD J, et al.Pseudopyramidal building units in mixed inorganic/organic network solids:Syntheses, structures, and properties of alpha-and beta-ZnHPO3·N4C2H4[J].Inorganic Chemistry,2001,40(5):895-899.
    [148] GORDON L E, HARRISON W T A Ammonium zinc hydrogenphosphitehydrate,(NH4)2Zn5(HPO3)6·4H2O[J]. Acta Crystallographica SectionE-Structure Reports Online,2002,58: I41-I43.
    [149] GORDON L E, HARRISON W T A Bis(melaminium) hydrogen phosphitetetrahydrate[J]. Acta Crystallographica Section E-Structure Reports Online,2003,59: O195-O197.
    [150] HARRISON W T A Guanidinium dihydrogen phosphite[J]. ActaCrystallographica Section E-Structure Reports Online,2003,59: O769-O770.
    [151] HARRISON W T A Triethanolammonium dihydrogenphosphite[J]. ActaCrystallographica Section E-Structure Reports Online,2003,59:O1267-O1269.
    [152] HARRISON W T A4-aza-1-azoniabicyclo2.2.2octanedihydrogenphosphite[J]. Acta Crystallographica Section E-Structure ReportsOnline,2003,59: O1351-O1353.
    [153] HARRISON W T A, YEATES R M, PHILLIPS M L F, et al. New frameworkconnectivity patterns in templated networks: The creatinine zinc phosphitesC4N3OH7·ZnHPO3, C4N3OH7·Zn(H2O)HPO3, and(C4N3OH7)2·ZnHPO3H2O[J]. Inorganic Chemistry,2003,42(5):1493-1498.
    [154] GORDON L E, HARRISON W T A Amino acid templating of inorganicnetworks: Synthesis and structure of L-asparagine zinc phosphite,C4N2O3H8·ZnHPO3[J]. Inorganic Chemistry,2004,43(6):1808-1809.
    [155] GORDON L E, HARRISON W T A beta-(H2N(CH2)2NH2)0.5ZnHPO3, asecond modification of ethylenediamine zinc hydrogen phosphite[J]. ActaCrystallographica Section C-Crystal Structure Communications,2004,60:M637-M639.
    [156] HARRISON W T A Piperizinium hydrogen phosphite monohydrate[J]. ActaCrystallographica Section E-Structure Reports Online,2004,60:O1577-O1579.
    [157] RITCHIE L K, HARRISON W T A Butane-1,4-diamine zinc(II) hydrogenphosphite[J]. Acta Crystallographica Section C-Crystal StructureCommunications,2004,60: M634-M636.
    [158] HARRISON W T A Poly piperazinium(2+) hexa-mu-hydrogenphosphito-mu-piperazine-pentazinc(II)[J]. Acta Crystallographica SectionC-Crystal Structure Communications,2006,62: M156-M158.
    [159] ROJO T, MESA J L, LAGO J, et al. Organically templated open-frameworkphosphites[J]. Journal of Materials Chemistry,2009,19(23):3793-3818.
    [160] YANG Y L, LI N, SONG H B, et al. Metal phosphite containing24-ringchannels with10-ring windows[J]. Chemistry of Materials,2007,19(8):1889-1891.
    [161] LIN H Y, CHIN C Y, HUANG H L, et al. Crystalline Inorganic Frameworkswith56-Ring,64-Ring, and72-Ring Channels[J]. Science,2013,339(6121):811-813.
    [162] LIU X C, XING Y,LIU X Z Solvothermal synthesis and magnetic properties ofcobalt(II) phosphite structures of varying dimensionality[J]. Crystengcomm,2010,12(2):383-386.
    [163] CHENG C C, CHANG W K, CHIANG R K, et al. Synthesis and structuralcharacterization of two cobalt phosphites:1-D (H3NC6H4NH3)Co(HPO3)2and2-D (NH4)2CO2(HPO3)3[J]. Journal of Solid State Chemistry,2010,183(2):304-309.
    [164] LI G J, XING Y, LIU Y L, et al. Synthesis and characterization of a purelyinorganic open-framework bimetallic phosphite with intersecting12-and16-membered ring channels[J]. Zeitschrift Fur Anorganische Und AllgemeineChemie,2008,634(5):916-920.
    [165] MANDAL S, NATARAJAN S Inorganic-organic hybrid structure: Synthesis,structure and magnetic properties of a cobalt phosphite-oxalate,C4N2H12Co4(HPO3)2(C2O4)3[J]. Journal of Solid State Chemistry,2005,178(7):2376-2382.
    [166] LI G, XING Y,SONG S Syntheses, structures and magnetic properties of twonew one-dimensional cobalt (II) phosphites with organic amines acting asligands[J]. Journal of Solid State Chemistry,2008,181(4):943-949.
    [167] LI L M, CHENG K, WANG F, et al. Ionothermal Synthesis of Chiral MetalPhosphite Open Frameworks with In Situ Generated Organic Templates[J].Inorganic Chemistry,2013,52(10):5654-5656.
    [168] ZHAO L, LI J Y, CHERI P, et al.2H3O·Co8(HPO3)9(CH3OH)3·2H2O: Anopen-framework cobalt phosphite containing extra-large18-ring channels[J].Chemistry of Materials,2008,20(1):17-19.
    [169] LIU X C, XING Y, WANG X L, et al. Chirality and magnetism of anopen-framework cobalt phosphite containing helical channels from achiralmaterials[J]. Chemical Communications,2010,46(15):2614-2616.
    [170] FERNANDEZ-ARMAS S, MESA J. L, PIZARRO J. L, et al. A neworganically templated gallium(III)-doped chromium(III) fluorophosphite,(C2H10N2)[Ga0.98Cr0.02(HPO3)F3] hydrothermal synthesis, crystal structure andspectroscopic properties[J]. J.Solid State Chem,2004,177:765-771.
    [171] WANG L, SONG T Y, FAN Y, et al. Ga3(HPO3)4F4(H3DETA)(DETA=diethylenetriamine): A new open-framework fluorinated gallium phosphitewith pentameric building unit[J]. Journal of Solid State Chemistry,2006,179(3):824-829.
    [172] WANG L, SONG T Y, FAN Y, et al. Synthesis and characterization of a newopen-framework fluorinated gallium phosphite with three-dimensionalintersecting channels[J]. Journal of Solid State Chemistry,2006,179(11):3400-3405.
    [173] HUANG L L, SONG T Y, SHI S H, et al. Hydrothermal synthesis,characterization and fluorescence property of a novel layered fluorinatedgallium phosphite with heptameric building unit[J]. Journal of Solid StateChemistry,2008,181(6):1279-1284.
    [174] YANG L, ZHANG R Y, BI W Y, et al. Crystal structure of diaqua tetragalliumhexaphosphate hydroxide1,2-diaminopropan-water (1:1:1),Ga4(HPO3)6(H2O)2(OH)2·C3H12N2·H2O[J]. Zeitschrift FurKristallographie-New Crystal Structures,2008,223(3):222-224.
    [175] ZHOU G P, YANG Y L, FAN R Q, et al. Hydrothermal Syntheses, CrystalStructures and Thermal Properties of Two New Organically TemplatedOpen-framework Gallium Phosphites[J]. Chemical Research in ChineseUniversities,2013,29(2):201-205.
    [176] LI C X, HUANG L L, ZHOU M D, et al. Synthesis, structure andcharacterization of two new open-framework gallium phosphite-oxalates ofvarying dimensionality[J]. Journal of Solid State Chemistry,2013,208:86-92.
    [177] ZHUO Y, CHEN C, LI S G, et al. Hydrothermal synthesis and structuralcharacterization of the first indium phosphite In2(HPO3)3(H2O)[J]. InorganicChemistry Communications,2005,8(2):166-169.
    [178] WANG L, SHI S H, YE J W, et al.(H3NC2H4NH3)In(OH)3(HPO3): the firstorganically templated indium phosphite[J]. Inorganic ChemistryCommunications,2005,8(3):271-273.
    [179] WANG L, SONG T Y, XU H N, et al. Synthesis and characterization of twonew organically templated indium phosphites built from one-dimensionalladders[J]. Microporous and Mesoporous Materials,2006,96(1-3):287-292.
    [180] LIU C Z, ZHU G S, FANG Q R, et al. Hydrothermal synthesis and crystalstructure of In2(HPO3)4·(NH3CH2CH2NH3)[J]. Chemical Journal of ChineseUniversities-Chinese,2007,28(9):1637-1639.
    [181] LIU C Z, ZHU G S, JIN Z, et al. Hydrothermal synthesis and characterizationof a new indium phosphite In4(HPO3)7(H2O)3(NH3CH2CH2NH3)(H2O) withintersecting twelve-membered ring channels[J]. Chemical Journal of ChineseUniversities-Chinese,2007,28(10):1826-1829.
    [182] YANG Y, ZHAO Y N, YU J G, et al. Two neutral open-framework metalphosphites with ten-ring channels constructed by three-, four-, andfive-connected centers[J]. Chemistry Letters,2008,37(7):678-679.
    [183] LI H D, ZHANG L R, LIU L, et al. Organic template-directed indiumphosphite-oxalate hybrid material: Synthesis and characterization of a novel3D C6H14N2In2(HPO3)3(C2O4) compound with intersecting channels[J].Inorganic Chemistry Communications,2009,12(10):1020-1023.
    [184] RAMASWAMY P, HEGDE N N, PRABHU R, et al. Synthesis, Structure, andTransformation Studies in a Family of Inorganic-Organic Hybrid FrameworkStructures Based on Indium[J]. Inorganic Chemistry,2009,48(24):11697-11711.
    [185] HUANG L L, SONG T Y, FAN Y, et al. Hydrothermal syntheses,characterizations of novel three-dimensional indium phosphite and indiumphosphite-phosphate with intersecting8-membered ring channels:In3(H2PO3)3(HPO3)4·(trans-C6N2H16) andIn6(HPO3)8(H2PO3)5(H2PO4)·(C3N2H12)2[J]. Microporous and MesoporousMaterials,2010,132(3):409-413.
    [186] DONG Z J, YAN Y, LI Y, et al. A new open-framework indiumphosphate-phosphite containing intersecting extra-large16-ring channels[J].Inorganic Chemistry Communications,2011,14(5):727-730.
    [187] HUANG L L, SONG T Y, FAN Y, et al. Synthesis and characterization of anew chiral open-framework indium phosphite with intertwined host and guesthelices[J]. Microporous and Mesoporous Materials,2012,149(1):95-100.
    [188] LI H D, ZHANG L R, HUO Q S, et al. Construction of two novel indiumphosphites with (3,6)-and (3,5)-connected frameworks: Synthesis, structureand characterization[J]. Journal of Solid State Chemistry,2013,197:75-80.
    [189] NATARAJAN S, MANDAL S Open‐Framework Structures of Transition‐Metal Compounds[J]. Angewandte Chemie International Edition,2008,47(26):4798-4828.
    [190] XING H Z, YANG W T, SU T, et al. Ionothermal Synthesis ofExtra-Large-Pore Open-Framework Nickel Phosphite5H3O·Ni8(HPO3)9Cl3·1.5H2O: Magnetic Anisotropy of theAntiferromagnetism[J]. Angewandte Chemie-International Edition,2010,49(13):2328-2331.
    [191] LUO X C, LUO D B, GONG M C, et al.(C2H8N)2Be3(HPO3)4: a low-densityberyllium phosphite with large16-membered rings and helical channels[J].Crystengcomm,2011,13(11):3646-3648.
    [192] LUO X C, LUO D B, ZENG H M, et al. A3,4-Connected Beryllium PhosphiteFramework Containing24-Ring Channels with a Very Low Density[J].Inorganic Chemistry,2011,50(18):8697-8699.
    [193] WANG J L, LUO D B, LUO X C, et al. Open-Framework BerylliumPhosphites with Layered Structures[J]. European Journal of InorganicChemistry,2011(32):4949-4953.
    [194] LUO D B, LUO X C, KANG M P, et al. Hydrothermal synthesis ofthree-dimensional open-framework beryllium phosphites with3,4-connectednetworks[J]. Solid State Sciences,2012,14(5):650-654.
    [195] XUE L, LUO D B, LUO X C, et al. Solvothermal synthesis of newopen-framework metal phosphites with structure-directing agents generated insitu[J]. Solid State Sciences,2013,19:80-84.
    [1] CHEETHAM A K, FEREY G,LOISEAU T Open-framework inorganicmaterials[J]. Angewandte Chemie-International Edition,1999,38(22):3268-3292.
    [2] WANG Y, YU J H, GUO M, et al.{Zn2(HPO4)4}{Co(dien)2}·H3O: A zincphosphate with multidirectional intersecting helical channels[J]. AngewandteChemie-International Edition,2003,42(34):4089-4092.
    [3] LI Y, YU J H, XU R R, et al. Combining structure modeling and electronmicroscopy to determine complex zeolite framework structures[J].Angewandte Chemie-International Edition,2008,47(23):4401-4405.
    [4] YU J H, XU R R Rational Approaches toward the Design and Synthesis ofZeolitic Inorganic Open-Framework Materials[J]. Accounts of ChemicalResearch,2010,43(9):1195-1204.
    [5] WENG D F, WANG Z M,GAO S Framework-structured weak ferromagnets[J].Chemical Society Reviews,2011,40(6):3157-3181.
    [6] WU J B, YAN Y, LIU B K, et al. Multifunctional open-framework zincphosphate C12H14N2·Zn6(PO4)4(HPO4)(H2O)2: photochromic, photoelectricand fluorescent properties[J]. Chemical Communications,2013,49(44):4995-4997.
    [7] LIN H Y, CHIN C Y, HUANG H L, et al. Crystalline Inorganic Frameworkswith56-Ring,64-Ring, and72-Ring Channels[J]. Science,2013,339(6121):811-813.
    [8] LUO X C, LUO D B, ZENG H M, et al. A3,4-Connected Beryllium PhosphiteFramework Containing24-Ring Channels with a Very Low Density[J].Inorganic Chemistry,2011,50(18):8697-8699.
    [9] XING H Z, YANG W T, SU T, et al. Ionothermal Synthesis ofExtra-Large-Pore Open-Framework Nickel Phosphite5H3O·Ni8(HPO3)9Cl3·1.5H2O: Magnetic Anisotropy of theAntiferromagnetism[J]. Angewandte Chemie-International Edition,2010,49(13):2328-2331.
    [10] LIU X C, XING Y, WANG X L, et al. Chirality and magnetism of anopen-framework cobalt phosphite containing helical channels from achiralmaterials[J]. Chemical Communications,2010,46(15):2614-2616.
    [11] ROJO T, MESA J L, LAGO J, et al. Organically templated open-frameworkphosphites[J]. Journal of Materials Chemistry,2009,19(23):3793-3818.
    [12] ZHAO L, LI J Y, CHERI P, et al.2H3O Co8(HPO3)9(CH3OH)3·2H2O: Anopen-framework cobalt phosphite containing extra-large18-ring channels[J].Chemistry of Materials,2008,20(1):17-19.
    [13] FERNANDEZ-ARMAS S, MESA J L, PIZARRO J L, et al.(C4N2H12)(Fe0.86Fe1.14III)FeII(HPO3)1.39(HPO4)0.47(PO4)0.14F3: Afluoro-phosphite-hydrogenphosphate-phosphate iron(II,III) mixed-valenceorganically templated compound[J]. Angewandte Chemie-InternationalEdition,2004,43(8):977-980.
    [14] LIANG J, LI J Y, YU J H, et al.(C4H12N)2Zn3(HPO3)4: An open-frameworkzinc phosphite containing extra-large24-ring channels[J]. AngewandteChemie-International Edition,2006,45(16):2546-2548.
    [15] LAI Y L, LII K H,WANG S L26-ring-channel structure constructed frombimetal phosphite helical chains[J]. Journal of the American Chemical Society,2007,129(17):5350-5351.
    [16] ZHUO Y, CHEN C, LI S G, et al. Hydrothermal synthesis and structuralcharacterization of the first indium phosphite In2(HPO3)3(H2O)[J]. InorganicChemistry Communications,2005,8(2):166-169.
    [17] WANG L, SHI S H, YE J W, et al.(H3NC2H4NH3)In(OH)3(HPO3): the firstorganically templated indium phosphite[J]. Inorganic ChemistryCommunications,2005,8(3):271-273.
    [18] WANG L, SONG T Y, XU H N, et al. Synthesis and characterization of twonew organically templated indium phosphites built from one-dimensionalladders[J]. Microporous and Mesoporous Materials,2006,96(1-3):287-292.
    [19] LIU C Z, ZHU G S, FANG Q R, et al. Hydrothermal synthesis and crystalstructure of In2(HPO3)4·(NH3CH2CH2NH3)[J]. Chemical Journal of ChineseUniversities-Chinese,2007,28(9):1637-1639.
    [20] LIU C Z, ZHU G S, JIN Z, et al. Hydrothermal synthesis and characterizationof a new indium phosphite In4(HPO3)7(H2O)3(NH3CH2CH2NH3)·(H2O) withintersecting twelve-membered ring channels[J]. Chemical Journal of ChineseUniversities-Chinese,2007,28(10):1826-1829.
    [21] YANG Y, ZHAO Y N, YU J G, et al. Two neutral open-framework metalphosphites with ten-ring channels constructed by three-, four-, andfive-connected centers[J]. Chemistry Letters,2008,37(7):678-679.
    [22] LI H D, ZHANG L R, LIU L, et al. Organic template-directed indiumphosphite-oxalate hybrid material: Synthesis and characterization of a novel3D C6H14N2·In2(HPO3)3(C2O4) compound with intersecting channels[J].Inorganic Chemistry Communications,2009,12(10):1020-1023.
    [23] RAMASWAMY P, HEGDE N N, PRABHU R, et al. Synthesis, Structure, andTransformation Studies in a Family of Inorganic-Organic Hybrid FrameworkStructures Based on Indium[J]. Inorganic Chemistry,2009,48(24):11697-11711.
    [24] HUANG L L, SONG T Y, FAN Y, et al. Hydrothermal syntheses,characterizations of novel three-dimensional indium phosphite and indiumphosphite-phosphate with intersecting8-membered ring channels:In3(H2PO3)3(HPO3)4·(trans-C6N2H16) andIn6(HPO3)8(H2PO3)5(H2PO4)·(C3N2H12)2[J]. Microporous and MesoporousMaterials,2010,132(3):409-413.
    [25] DONG Z J, YAN Y, LI Y, et al. A new open-framework indiumphosphate-phosphite containing intersecting extra-large16-ring channels[J].Inorganic Chemistry Communications,2011,14(5):727-730.
    [26] HUANG L L, SONG T Y, FAN Y, et al. Synthesis and characterization of anew chiral open-framework indium phosphite with intertwined host and guesthelices[J]. Microporous and Mesoporous Materials,2012,149(1):95-100.
    [27] LI H D, ZHANG L R, HUO Q S, et al. Construction of two novel indiumphosphites with (3,6)-and (3,5)-connected frameworks: Synthesis, structureand characterization[J]. Journal of Solid State Chemistry,2013,197:75-80.
    [28] WANG X J, ZHANG J H, SONG J L, et al. Syntheses, crystal structures of aseries of novel alkali metal or alkaline earth metal phosphites[J].Crystengcomm,2013,15(13):2519-2526.
    [29] FERNANDEZ S, MESA J L, PIZARRO J L, et al.(C2H10N2)·Cr(HPO3)F3:The first organically templated fluorochromium(III) phosphite[J]. AngewandteChemie-International Edition,2002,41(19):3683-3685.
    [30] SAINT, Bruker AXS Inc.,5465East Cheryl Parkway, Madison, WI,53711-5373, USA,2000.
    [31] SHELXTL, Bruker AXS Inc.,5465East Cheryl Parkway, Madison, WI,53711-5373, USA,2000.
    [32] LIU L, ZHANG L R, WANG X F, et al. Syntheses and structures of two chiralzincophosphite compounds: Zn(C8H8N2)(HPO3) and (C6H13N2)Zn3(C6H12N2)(HPO3)3(H2PO3)[J]. Dalton Transactions,2008(15):2009-2014.
    [33] LEE M Y, WANG S L Syntheses and characterizations of four organicallytemplated one-dimensional molybdenum compounds including the firstinorganic-organic mixed-anion structures in the Mo/X/O (X=As, P) system[J].Chemistry of Materials,1999,11(12):3588-3594.
    [34] BOULARD S, GILOT P, BROSIUS R, et al. Perturbation and tracerchromatography study of hydrocarbon adsorption from simulated exhaust gason Fe-MFI and MOR type zeolite catalysts[J]. Topics in Catalysis,2004,30-1(1-4):49-53.
    [35] FENG J D, SHAO K Z, TANG S W, et al. Ionothermal synthesis of a newopen-framework zinc phosphite NIS-3with low framework density[J].Crystengcomm,2010,12(5):1401-1403.
    [36] YANG Y L, LI N, SONG H B, et al. Metal phosphite containing24-ringchannels with10-ring windows[J]. Chemistry of Materials,2007,19(8):1889-1891.
    [37] LI J Y, YU J H,XU R R Computational simulation study towards the synthesisof extra-large microporous materials[J]. Microporous and MesoporousMaterials,2007,101(3):406-412.
    [38] CHIANG R K, CHUANG N T. Hydrothermal synthesis and structurecharacterization of a new3D vanadium hydrogen phosphite with14-ringchannels:(C5N2H14)VO(H2O)3(HPO3)4·H2O[J]. Journal of Solid StateChemistry,2005,178(10):3040-3045.
    [39] LIN Z E, ZHANG J, ZHENG S T, et al. Synthesis and characterization of anovel open-framework nickel zinc phosphite with intersectingthree-dimensional16-ring channels[J]. Journal of Materials Chemistry,2004,14(10):1652-1655.
    [40] CHEN W B, LI N, XIANG S H. Zn3(HPO3)4·Zn(H2O)6: a purely inorganicopen-framework zincophosphite with octahedral zinc complex Zn(H2O)62+encapsulating in the channels[J]. Journal of Solid State Chemistry,2004,177(9):3229-3234.
    [1]徐如人,庞文琴,于吉红,等.分子筛与多孔材料化学[M].北京:科学出版社.2004
    [2] LIN H Y, CHIN C Y, HUANG H L, et al. Crystalline Inorganic Frameworkswith56-Ring,64-Ring, and72-Ring Channels[J]. Science,2013,339(6121):811-813.
    [3] LI L M, CHENG K, WANG F, et al. Ionothermal Synthesis of Chiral MetalPhosphite Open Frameworks with In Situ Generated Organic Templates[J].Inorganic Chemistry,2013,52(10):5654-5656.
    [4] LUO X C, GONG M C, CHEN Y Q, et al. Flux synthesis of two newopen-framework zinc phosphites with16-ring channels[J]. Microporous andMesoporous Materials,2010,131(1-3):418-422.
    [5] FENG J D, SHAO K Z, TANG S W, et al. Ionothermal synthesis of a newopen-framework zinc phosphite NIS-3with low framework density[J].Crystengcomm,2010,12(5):1401-1403.
    [6] DONG Z J, ZHAO L, LIANG Z Q, et al. Zn(HPO3)(C11N2O2H12) andZn3(H2O)(PO4)(HPO4)(C6H9N3O2)2(C6H8N3O2): homochiral zincphosphite/phosphate networks with biofunctional amino acids[J]. DaltonTransactions,2010,39(23):5439-5445.
    [7] LI J Y, LI L, LIANG J, et al. Template-designed syntheses of open-frameworkzinc phosphates with extra-large24-ring channels[J]. Crystal Growth&Design,2008,8(7):2318-2323.
    [8] LAI Y L, LII K H,WANG S L26-ring-channel structure constructed frombimetal phosphite helical chains[J]. Journal of the American Chemical Society,2007,129(17):5350-5351.
    [9] LIANG J, LI J Y, YU J H, et al.(C4H12N)2Zn3(HPO3)4: An open-frameworkzinc phosphite containing extra-large24-ring channels[J]. AngewandteChemie-International Edition,2006,45(16):2546-2548.
    [10] RODGERS J A, HARRISON W T A Ethylenediamine zinc hydrogenphosphite,(H2N(CH2)2NH2)0.5·ZnHPO3, containing two independent,interpenetrating, mixed inorganic/organic networks[J]. ChemicalCommunications,2000(23):2385-2386.
    [11] HARRISON W T A, YEATES R M, PHILLIPS M L F, et al. New frameworkconnectivity patterns in templated networks: The creatinine zinc phosphitesC4N3OH7·ZnHPO3, C4N3OH7·Zn(H2O)HPO3, and(C4N3OH7)2·ZnHPO3H2O[J]. Inorganic Chemistry,2003,42(5):1493-1498.
    [12] LIN Z E, ZHANG J, ZHENG S T, et al. Synthesis and characterization ofZn(2,2'-bipy)2(H2PO3)4: A neutral zinc phosphite cluster containing ZnO3N2and H2PO3units[J]. Solid State Sciences,2003,5(11-12):1435-1438.
    [13] FAN H, SLEBODNICK C,HANSON B E A tetranuclear zinc cluster,(bipy)4Zn4(HPO3)4, that stabilizes a hydrogen bonded chain of watermolecules: Transformation of a zinc phosphite4-ring to a cluster[J]. InorganicChemistry Communications,2006,9(1):103-106.
    [14] DUAN C M, LUO D B, WANG Q, et al. Solvent-free synthesis of new metalphosphite structures varying from1D chain to2D slab and3D network[J].Inorganic Chemistry Communications,2013,31:79-82.
    [15] FAN J, SLEBODNICK C, TROYA D, et al. Five new zinc phosphitestructures: Tertiary building blocks in the construction of hybrid materials[J].Inorganic Chemistry,2005,44(8):2719-2727.
    [16] HARRISON W T A. H3N(CH2)3NH3·Zn(HPO3)2containing four-ring chainsof ZnO4tetrahedra and HPO3pseudo pyramids[J]. International Journal ofInorganic Materials,2001,3(2):187-189.
    [17] HARRISON W T A. C5H14NO·ZnCl(HPO3), an unexpected product from anionic-liquid synthesis[J]. Inorganic Chemistry Communications,2007,10(7):833-835.
    [18] HARRISON W T A, PHILLIPS M L F, STANCHFIELD J, et al.Pseudopyramidal building units in mixed inorganic/organic network solids:Syntheses, structures, and properties of alpha-and beta-ZnHPO3·N4C2H4[J].Inorganic Chemistry,2001,40(5):895-899.
    [19] HU L M, FAN J, SLEBODNICK C, et al. Structural diversity in4,4'-trimethylenedipyridine-zinc phosphite hybrids: Incorporation of neutralguest molecules in hybrid materials[J]. Inorganic Chemistry,2006,45(19):7681-7688.
    [20] LIN Z E, FAN W, GU J L, et al. Crystal structures and spectroscopicproperties of a new zinc phosphite cluster and an unexpected chainlike zincphosphate obtained by hydrothermal reactions[J]. Journal of Solid StateChemistry,2007,180(3):981-987.
    [21] LIU L, WANG X F, LIU Y L, et al. Solution-mediated syntheses andcharacterizations of two new zincophosphites (C6H14N2)0.5Zn(H2PO3)2and(C4H12N2)0.5(CH3)2NH2Zn2(HPO3)3[J]. Inorganica Chimica Acta,2009,362(11):4053-4058.
    [22] LIU L, ZHANG L R, WANG X F, et al. Syntheses and structures of two chiralzincophosphite compounds: Zn(C8H8N2)(HPO3) and (C6H13N2)Zn3(C6H12N2)(HPO3)3(H2PO3)[J]. Dalton Transactions,2008(15):2009-2014.
    [23] MANDAL S, NATARAJAN S Synthesis of open-framework zinc phosphitestructures of varying dimensionality[J]. Solid State Sciences,2006,8(3-4):388-396.
    [24] MANDAL S, NATARAJAN S Synthesis, structure, and polymorphism studiesin amine-templated open-framework zinc phosphites[J]. Inorganic Chemistry,2008,47(12):5304-5313.
    [25] SHI S H, LI G H, XIN H M, et al. Hydrothermal synthesis and structurecharacterization of C4H8N2H4·Zn(HPO3)2[J]. Chemical Journal of ChineseUniversities-Chinese,2004,25(2):230-232.
    [26] ZHONG Y J, CHEN Y M, SUN Y Q, et al. Syntheses and characterization oftwo new zinc phosphites with1D chains decorated by Zn-centeredcomplexes[J]. Journal of Solid State Chemistry,2005,178(9):2613-2619.
    [27] SHIEH M., MARTIN K J., SQUATTRITO P. J., et al. NewLow-Dimensional Zinc Compounds Containing Zinc-Oxygen-PhosphorusFrameworks: Two-Layered Inorganic Phosphites and a Polymeric OrganicPhosphinate[J]. Inorganic Chemistry,1990,29:958-963.
    [28] GORDON L E, HARRISON W T A Ammonium zinc hydrogenphosphitehydrate,(NH4)2Zn5(HPO3)6·4H2O[J]. Acta Crystallographica SectionE-Structure Reports Online,2002,58: I41-I43.
    [29] WANG Y, YU J H, DU Y, et al. Hydrothermal synthesis and characterizationof a new inorganic-organic hybrid layered zinc phosphate-phosphite(C6H15N2)2Zn4(PO4)2(HPO3)2[J]. Journal of the Chemical Society-DaltonTransactions,2002(21):4060-4063.
    [30] LIANG J, WANG Y, YU J H, et al. Synthesis and structure of a new layeredzinc phosphite (C5H6N2)Zn(HPO3) containing helical chains[J]. ChemicalCommunications,2003(7):882-883.
    [31] WANG Y, YU J H, LI Y, et al.(C6H16N2)Zn3(HPO3)4H2O: a new layered zincphosphite templated by diprotonated trans-1,4-diaminocyclohexane[J]. Journalof Solid State Chemistry,2003,170(2):303-307.
    [32] CHEN X X, WANG Y, YU J H, et al.(C6H17N3)Zn4(PO4)2(HPO3)2: a newlayered zinc phosphate-phosphite templated by1-(2-Aminoethyl)piperazine[J]. Journal of Solid State Chemistry,2004,177(7):2518-2522.
    [33] GORDON L E, HARRISON W T A Amino acid templating of inorganicnetworks: Synthesis and structure of L-asparagine zinc phosphite,C4N2O3H8·ZnHPO3[J]. Inorganic Chemistry,2004,43(6):1808-1809.
    [34] KIRKPATRICK A, HARRISON W T A Two zincophosphite frameworkstemplated by1,4-diaminobenzene: syntheses and structures ofC6N2H10·Zn(HPO3)2and (C6N2H8)0.5·ZnHPO3[J]. Solid State Sciences,2004,6(6):593-598.
    [35] LIN Z E, ZHANG J, ZHENG S T, et al. Synthesis and characterization oforganically templated zinc phosphites with two-and three-dimensionalstructures,(C2N2H10)Zn2(HPO3)3and(C4N2H12)Zn3(HPO3)4[J]. Solid StateSciences,2004,6(4):371-376.
    [36] LI L, CHAO C, MENG H, et al. Hydrothermal synthesis and characterizationof a novel zinc phosphite compound[J]. Chemical Journal of ChineseUniversities-Chinese,2005,26(10):1783-1786.
    [37] ZENG Q X, KE R R, XIANG Y, et al. Synthesis and characterization of a newlayered zinc phosphite (NH4){Zn(H2O)4}0.5Zn2(HPO3)3[J]. Zeitschrift FurAnorganische Und Allgemeine Chemie,2005,631(15):3066-3069.
    [38] ZHONG Y J, CHEN Y M, SUN Y Q, et al. Synthesis and characterization of atwo-dimensional zinc phosphite, Zn3(tren)(HPO3)3·xH2O (x approximate to0.5; tren=tris(2-aminoethyl)amine)[J]. Zeitschrift Fur Anorganische UndAllgemeine Chemie,2005,631(10):1957-1960.
    [39] CHEN L, BU X H Histidine-controlled two-dimensional assembly of zincphosphite four-ring units[J]. Chemistry of Materials,2006,18(7):1857-1860.
    [40] LIN Z E, FAN W, GAO F F, et al. A new organically templated zinc phosphitesynthesized in phosphorous acid flux and its hydrothermal analogue[J].Crystal Growth&Design,2006,6(11):2435-2437.
    [41] LIU L, LIU Y L, LI G H, et al. Zn2(HPO3)2(H2PO3)C3H5N2andZn2(HPO3)3(C4H7N2)2·2H2O: Two new layered zinc phosphites with double12-membered rings templated by imidazole and2-methylimidazole[J]. Journalof Solid State Chemistry,2006,179(5):1312-1317.
    [42] NGUYEN D T, CHEW E, ZHANG Q C, et al. Metal-organic frameworksfrom zinc sulfite clusters, chains, and sheets:4-connected,(3,4)-connected3-D frameworks and2-D arrays of catenane-like interlocking rings[J].Inorganic Chemistry,2006,45(26):10722-10727.
    [43] ZHANG D, YUE H J, SHI Z, et al. Hydrothermal synthesis and structuralcharacterization of organically templated zincophosphites:Zn(C4N3H13)Zn4(HPO3)6·(C4N3H15) andZn5(H2O)4(HPO3)6·(C7NH10)2(H2O)[J]. Solid State Sciences,2006,8(2):192-196.
    [44] WANG G M, LI J H, LI Z X, et al. Synthesis and characterization of(C2H8NO)2Zn5(HPO3)6(H2O)2: a new2D hybrid zinc phosphite with neutralframework[J]. Zeitschrift Fur Anorganische Und Allgemeine Chemie,2008,634(6-7):1149-1153.
    [45] YANG Y, ZHAO Y N, YU J G, et al. Template syntheses of twoopen-framework zinc phosphites[J]. Zeitschrift Fur Anorganische UndAllgemeine Chemie,2008,634(10):1780-1784.
    [46] LIN Z E, NAYEK H P,DEHNEN S Transformation of a Layered ZincPhosphite to a Three-Dimensional Open-Framework Structure withIntersecting16-and12-Ring Channels[J]. Inorganic Chemistry,2009,48(8):3517-3519.
    [47] LIU X C, XING Y, LIU L, et al. Synthesis and Characterization of anInorganic-Organic Hybrid Layered Zinc Phosphite (C2H3N3)Zn(HPO3)[J].Zeitschrift Fur Anorganische Und Allgemeine Chemie,2009,635(2):361-364.
    [48] SONG D S, SU D P, FU Z Y, et al. Synthesis, characterization, and catalyticbehavior of two open-framework zinc phosphites with2D and3D structures[J].Inorganic Chemistry Communications,2011,14(1):150-154.
    [49] WANG L, XUE R F, CHEN R X, et al. Synthesis and characterization of anew open-framework zinc phosphite (4,4'-(C5H4N)2(CH2)3)·Zn3(HPO3)4[J].Science China-Chemistry,2012,55(3):329-333.
    [50] WANG G M, LI J H, ZHANG X, et al. In situ template generation viaN-alkylation in the syntheses of open-framework zinc phosphites andphosphate[J]. Dalton Transactions,2013,42(36):13084-13091.
    [51] PHILLIPS M L F, NENOFF T M, THOMPSON C T, et al. Variations on the(3,4)-net motif in organo-zincophosphite chemistry: Syntheses and structuresof (CN3H6)2·Zn3(HPO3)4·H2O and H3N(CH2)3NH3·Zn3(HPO3)4·H2O[J].Journal of Solid State Chemistry,2002,167(2):337-343.
    [52] DONG W J, LI G H, SHI Z, et al. Hydrothermal synthesis and structuralcharacterization of an organically-templated zincophosphite:(C4N2H12)0.5·Zn3(HPO3)4·H3O[J]. Inorganic Chemistry Communications,2003,6(6):776-780.
    [53] CHEN W B, LI N,XIANG S H. Zn3(HPO3)4·Zn(H2O)6: a purely inorganicopen-framework zincophosphite with octahedral zinc complex Zn(H2O)62+encapsulating in the channels[J]. Journal of Solid State Chemistry,2004,177(9):3229-3234.
    [54] FU W S, SHI Z, LI G N, et al. Synthesis and characterization of anorganically-templated zincophosphite: C6H16N2·Zn3(HPO3)4[J]. Solid StateSciences,2004,6(2):225-228.
    [55] JOHNSTONE J A, HARRISON W T A Triethanolamine zinc phosphite,(C6H13NO3)Zn2(HPO3): A templated network or a network of clusters?[J].Inorganic Chemistry,2004,43(15):4567-4569.
    [56] LIN Z E, ZHANG J, ZHENG S T, et al. Synthesis and characterization of anew hybrid zinc phosphite (4,4'-bipy)Zn(HPO3)2with a pillared layerstructure[J]. Microporous and Mesoporous Materials,2004,68(1-3):65-70.
    [57] LIN Z E, ZHANG J, ZHENG S T, et al. Synthesis and characterization of anovel open-framework nickel zinc phosphite with intersectingthree-dimensional16-ring channels[J]. Journal of Materials Chemistry,2004,14(10):1652-1655.
    [58] LIN Z E, ZHANG M, ZHENG S T, et al. A novel open-framework zincphosphite, Zn3(HPO3)4Ni(en)2(H2O)2, templated by a transition-metalcomplex[J]. European Journal of Inorganic Chemistry,2004(5):953-955.
    [59] PAN H X, ZHENG S T,YANG G Y Synthesis and characterization of a newinorganic-organic hybrid open-framework zinc phosphite:(C6N3H12)2·Zn5(HPO3)6[J]. Microporous and Mesoporous Materials,2004,75(1-2):129-133.
    [60] SHI S H, WEI Q, LI G H, et al. Building three-dimensional metal phosphitesfrom the corner-shared four-membered rings chain[J]. Journal of Solid StateChemistry,2004,177(9):3038-3044.
    [61] WANG L, SHI Z, FU W S, et al. Hydrothermal synthesis and structuralcharacterization of two organically templated zincophosphites withthree-dimensional frameworks,(C6H14N2)·Zn3(HPO3)4and(C4H12N2)·Zn3(HPO3)4[J]. Journal of Solid State Chemistry,2004,177(1):80-88.
    [62] ZHANG D, SHI Z, DONG W, et al. Hydrothermal synthesis and structuralcharacterization of novel organically templated zincophosphites:C6H4(CH2NH3)2·Zn3(HPO3)4and (CH3CH2CH2NH3)2·Zn3(HPO3)4[J]. Journalof Solid State Chemistry,2004,177(1):343-349.
    [63] CHEN W B, LI N,XIANG S H Synthesis and structure of a novelthree-dimensional organo-zincophosphite with three intersecting channels[J].Chinese Journal of Chemistry,2005,23(3):255-260.
    [64] LIANG J, LI J Y, YU J H, et al. Synthesis and characterization of two newopen-framework zinc phosphites M(C6N4H18)Zn3(HPO3)4(M=Ni, Co) withmulti-directional intersecting12-membered ring channels[J]. Journal of SolidState Chemistry,2005,178(9):2673-2679.
    [65] PAN J X, ZHENG S T,YANG G Y Syntheses and characterization of two newopen-framework zinc Phosphites with12-ring channels,H3N(CH2)4NH3·Zn3(HPO3)4·H2O and (C3N2H5)2·Zn3(HPO3)4[J]. CrystalGrowth&Design,2005,5(1):237-242.
    [66] ZHANG D, SHI Z, YUE H J, et al. Hydrothermal synthesis and structuralcharacterization of novel organically templated zincophosphites:H2mpipe·Zn3(HPO3)4and H2en1.5·Zn4.5(HPO3)6(mpipe=1-methylpiperazineand en=ethylenediamine)[J]. Inorganica Chimica Acta,2005,358(2):265-270.
    [67] ZHANG D, YUE H J, SHI Z, et al. Hydrothermal synthesis and structuralcharacterization of organically templated zincophosphites:(C6H22N4)0.5·Zn2(HPO3)3and C3N2H5·Zn1.5(HPO3)2[J]. Solid State Sciences,2005,7(10):1256-1260.
    [68] CHEN L, BU X H (3,4)-connected zincophosphites as structural analogues ofzinc hydrogen phosphate[J]. Inorganic Chemistry,2006,45(12):4654-4660.
    [69] LIANG J, LI J Y, YU J H, et al. Ni(C6N2H14)2Zn4(H2O)(HPO3)5: A newopen-framework zinc phosphite with intersecting8-,12-and16-ringchannels[J]. Journal of Solid State Chemistry,2006,179(7):1977-1983.
    [70] CHANG W M, CHENG M Y, LIAO Y C, et al. Template effect of chain-typepolyamines on pore augmentation: Five open-framework zinc phosphates with16-ring channels[J]. Chemistry of Materials,2007,19(25):6114-6119.
    [71] HOLTBY A S, HARRISON W T A, YILMAZ V T, et al. Newthree-dimensional (3,4)-net zincophosphites templated by linear diammoniumcations: H3N(CH2)5NH3·Zn3(HPO3)4and beta-H3N(CH2)6NH3·Zn3(HPO3)4[J].Solid State Sciences,2007,9(2):149-154.
    [72] YANG Y, ZHAO Y N,YU J G Synthesis and structure of manganese zincphosphate-phosphite with extra large twenty-membered ring channels[J].Chemical Journal of Chinese Universities-Chinese,2007,28(12):2252-2254.
    [73] QIAO J, ZHANG L R, LIU L, et al. Solvothermal synthesis and structure of anovel3D zincophosphite Co(en)3Zn4(HPO3)5(H2PO3) containing helicalchains[J]. Journal of Solid State Chemistry,2008,181(11):2908-2913.
    [74] YANG Y, ZHAO Y N, YU J G, et al. Doping-induced structure variation of1,3-cyclohexane-bis(methylamine)-templated zinc-phosphorus openstructures[J]. Inorganic Chemistry,2008,47(3):769-771.
    [75] LIN Z E, DEHNEN S Flux synthesis of (3,4)-connected zinc phosphites withdifferent framework topologies[J]. Journal of Solid State Chemistry,2009,182(11):3143-3148.
    [76] LIN Z E, NAYEK H P,DEHNEN S Flux synthesis of three-dimensionalopen-framework zinc phosphite and manganese phosphite-oxalate with12-ring channels[J]. Microporous and Mesoporous Materials,2009,126(1-2):95-100.
    [77] LIU H Y, ZHANG Z J, SHI W, et al. Amino acid template-synthesis andcharacterization of three-dimensional metal phosphate/phosphite networks[J].Inorganic Chemistry Communications,2009,12(7):660-663.
    [78] HARRISON W T A, MCNAMEE P M The cyclo-propylammonium cation asa templating agent for inorganic networks: synthesis and structure of(C3H8N)2·Zn3(HPO3)4[J]. Journal of Chemical Research,2010(11):641-642.
    [79] KANG M P, LUO D B, LUO X C, et al. Synthesis and characterization ofthree open-framework zinc phosphites with (3,4)-connected frameworks[J].Solid State Sciences,2011,13(8):1473-1477.
    [80] WANG S D, LUO D B, LUO X C, et al. Flux synthesis of two new organicallytemplated zinc phosphites with different3,4-connected frameworks[J]. SolidState Sciences,2011,13(5):904-907.
    [81] Three-dimensional Open-framework Zinc Phosphite: Synthesis andCharacterization
    [82] WANG P, WANG G M, LI J H, et al. Syntheses and structures of twoopen-framework zinc phosphites with extra-large24-ring channels[J]. SolidState Sciences,2012,14(8):1030-1035.
    [83] LI L M, CHENG K,ZHANG J An inorganic-organic hybrid zinc phosphiteframework with unusual topology[J]. Inorganic Chemistry Communications,2013,30:136-138.
    [84] WANG G M, ZHANG X, LI J H, et al. A new hybrid zinc phosphite with apillared layered structure: Synthesis and characterization ofC6N2O2H16Zn(HPO3)2[J]. Inorganic Chemistry Communications,2013,36:27-30.
    [85] SAINT, Bruker AXS Inc.,5465East Cheryl Parkway, Madison, WI,53711-5373, USA,2000.
    [86] SHELXTL, Bruker AXS Inc.,5465East Cheryl Parkway, Madison, WI,53711-5373, USA,2000.
    [87] WANG Y, YU J H, GUO M, et al.{Zn2(HPO4)4}{Co(dien)2}·H3O: A zincphosphate with multidirectional intersecting helical channels[J]. AngewandteChemie-International Edition,2003,42(34):4089-4092.
    [88] ROJO T, MESA J L, LAGO J, et al. Organically templated open-frameworkphosphites[J]. Journal of Materials Chemistry,2009,19(23):3793-3818.
    [89] CHEETHAM A K, FEREY G,LOISEAU T Open-framework inorganicmaterials[J]. Angewandte Chemie-International Edition,1999,38(22):3268-3292.
    [90] YU J H, XU R R Rational Approaches toward the Design and Synthesis ofZeolitic Inorganic Open-Framework Materials[J]. Accounts of ChemicalResearch,2010,43(9):1195-1204.
    [91] RAO C N R, NATARAJAN S, CHOUDHURY A, et al. Aufbau principle ofcomplex open-framework structures of metal phosphates with differentdimensionalities[J]. Accounts of Chemical Research,2001,34(1):80-87.
    [92] LUO X C, LUO D B, ZENG H M, et al. A3,4-Connected Beryllium PhosphiteFramework Containing24-Ring Channels with a Very Low Density[J].Inorganic Chemistry,2011,50(18):8697-8699.
    [93] XIANG Y, ZHANG L W, CHEN W H, et al. Synthesis and characterization ofa new organically templated aluminophosphite with a chainlike structure[J].Zeitschrift Fur Anorganische Und Allgemeine Chemie,2007,633(10):1727-1730.
    [94] JING X M, ZHANG L R, GONG S Z, et al. Hydrothermal synthesis andcharacterization of two novel three-dimensional vanadium phosphites:(C10H10N2)(V2IVO2)(HPO3)2(H2PO3)2and (C4H16N3)(V2IVVIIIO2F2)(HPO3)4[J].Microporous and Mesoporous Materials,2008,116(1-3):101-107.
    [95] FERNANDEZ-ARMAS S, MESA J L, PIZARRO J L, et al. Parametrizationof the magnetic behavior of the triangular spin ladder chains organicallytemplated:(C2N2H10)M(HPO3)F3(MIII=Fe, Cr, and V). Crystal structure andthermal and spectroscopic properties of the iron(III) phase[J]. InorganicChemistry,2006,45(8):3240-3248.
    [96] MANDAL S, GREEN M A, PATI S K, et al. Synthesis, structure and magneticproperties of an inorganic-organic hybrid compound[J]. Journal of MaterialsChemistry,2007,17(10):980-985.
    [97] LIU W, CHEN H H, YANG X X, et al. Two novel transition-metal phosphitecompounds with4-,6-and12-membered rings: Hydrothermal syntheses,crystal structures and magnetic properties of Na2M(HPO3)2(M=Fe, Co)[J].European Journal of Inorganic Chemistry,2005(5):946-951.
    [98] LIN Z E, FAN W, GAO F F, et al. A novel layered bimetallic phosphiteintercalating with organic amines: Synthesis and characterization ofCo(H2O)4Zn4(HPO3)6·C2N2H10[J]. Journal of Solid State Chemistry,2006,179(3):723-728.
    [99] YANG L, ZHANG R Y, BI W Y, et al. Crystal structure of diaqua tetragalliumhexaphosphate hydroxide1,2-diaminopropan-water (1:1:1),Ga4(HPO3)6(H2O)2(OH)2·C3H12N2·H2O[J]. Zeitschrift FurKristallographie-New Crystal Structures,2008,223(3):222-224.
    [100] HUANG L L, SONG T Y, FAN Y, et al. Hydrothermal syntheses,characterizations of novel three-dimensional indium phosphite and indiumphosphite-phosphate with intersecting8-membered ring channels:In3(H2PO3)3(HPO3)4·(trans-C6N2H16) andIn6(HPO3)8(H2PO3)5(H2PO4)·(C3N2H12)2[J]. Microporous and MesoporousMaterials,2010,132(3):409-413.
    [101] WANG L L, LIU Y M, XIE W, et al. Improving the hydrophobicity andoxidation activity of Ti-MWW by reversible structural rearrangement[J].Journal of Physical Chemistry C,2008,112(15):6132-6138.
    [102] ROTH W J, SHVETS O V, SHAMZHY M, et al. PostsynthesisTransformation of Three-Dimensional Framework into a Lamellar Zeolite withModifiable Architecture[J]. Journal of the American Chemical Society,2011,133(16):6130-6133.
    [1] CHEETHAM A K, FEREY G,LOISEAU T. Open-framework inorganicmaterials[J]. Angewandte Chemie-International Edition,1999,38(22):3268-3292.
    [2] YU J H, XU R R. Rational Approaches toward the Design and Synthesis ofZeolitic Inorganic Open-Framework Materials[J]. Accounts of ChemicalResearch,2010,43(9):1195-1204.
    [3] RAO C N R, NATARAJAN S, CHOUDHURY A, et al. Aufbau principle ofcomplex open-framework structures of metal phosphates with differentdimensionalities[J]. Accounts of Chemical Research,2001,34(1):80-87.
    [4] XING H Z, YANG W T, SU T, et al. Ionothermal Synthesis ofExtra-Large-Pore Open-Framework Nickel Phosphite5H3O·Ni8(HPO3)9Cl3·1.5H2O: Magnetic Anisotropy of theAntiferromagnetism[J]. Angewandte Chemie-International Edition,2010,49(13):2328-2331.
    [5] LI Y, YU J H, XU R R, et al. Combining structure modeling and electronmicroscopy to determine complex zeolite framework structures[J].Angewandte Chemie-International Edition,2008,47(23):4401-4405.
    [6] LIN H Y, CHIN C Y, HUANG H L, et al. Crystalline Inorganic Frameworkswith56-Ring,64-Ring, and72-Ring Channels[J]. Science,2013,339(6121):811-813.
    [7] ROJO T, MESA J L, LAGO J, et al. Organically templated open-frameworkphosphites[J]. Journal of Materials Chemistry,2009,19(23):3793-3818.
    [8] FERNANDEZ-ARMAS S, MESA J L, PIZARRO J L, et al.(C4N2H12)(Fe0.86Fe1.14III)FeII(HPO3)1.39(HPO4)0.47(PO4)0.14F3: Afluoro-phosphite-hydrogenphosphate-phosphate iron(II,III) mixed-valenceorganically templated compound[J]. Angewandte Chemie-InternationalEdition,2004,43(8):977-980.
    [9] FERNANDEZ S, MESA J L, PIZARRO J L, et al.(C2H10N2)Cr(HPO3)F3:The first organically templated fluorochromium(III) phosphite[J]. AngewandteChemie-International Edition,2002,41(19):3683-3685.
    [10] HUANG H L, WANG S L An extraordinary boron-mediated16R-channel-containing trivalent vanadium phosphite with unique solid stateredox properties[J]. Chemical Communications,2010,46(33):6141-6143.
    [11] LUO X C, LUO D B, ZENG H M, et al. A3,4-Connected Beryllium PhosphiteFramework Containing24-Ring Channels with a Very Low Density[J].Inorganic Chemistry,2011,50(18):8697-8699.
    [12] LAI Y L, LII K H,WANG S L26-ring-channel structure constructed frombimetal phosphite helical chains[J]. Journal of the American Chemical Society,2007,129(17):5350-5351.
    [13] LIANG J, LI J Y, YU J H, et al.(C4H12N)2Zn3(HPO3)4: An open-frameworkzinc phosphite containing extra-large24-ring channels[J]. AngewandteChemie-International Edition,2006,45(16):2546-2548.
    [14] LIU X C, XING Y,LIU X Z Solvothermal synthesis and magnetic properties ofcobalt(II) phosphite structures of varying dimensionality[J]. Crystengcomm,2010,12(2):383-386.
    [15] FAN J, YEE G T, WANG G B, et al. Syntheses, structures, and magneticproperties of inorganic-organic hybrid cobalt(II) phosphites containingbifunctional ligands[J]. Inorganic Chemistry,2006,45(2):599-608.
    [16] CHENG C C, CHANG W K, CHIANG R K, et al. Synthesis and structuralcharacterization of two cobalt phosphites:1-D (H3NC6H4NH3)Co(HPO3)2and2-D (NH4)2CO2(HPO3)3[J]. Journal of Solid State Chemistry,2010,183(2):304-309.
    [17] LIU X C, XING Y, WANG X L, et al. Chirality and magnetism of anopen-framework cobalt phosphite containing helical channels from achiralmaterials[J]. Chemical Communications,2010,46(15):2614-2616.
    [18] MANDAL S, NATARAJAN S Inorganic-organic hybrid structure: Synthesis,structure and magnetic properties of a cobalt phosphite-oxalate,C4N2H12Co4(HPO3)2(C2O4)3[J]. Journal of Solid State Chemistry,2005,178(7):2376-2382.
    [19] LI G, XING Y,SONG S Syntheses, structures and magnetic properties of twonew one-dimensional cobalt (II) phosphites with organic amines acting asligands[J]. Journal of Solid State Chemistry,2008,181(4):943-949.
    [20] LI L M, CHENG K, WANG F, et al. Ionothermal Synthesis of Chiral MetalPhosphite Open Frameworks with In Situ Generated Organic Templates[J].Inorganic Chemistry,2013,52(10):5654-5656.
    [21] DUAN C M, LUO D B, WANG Q, et al. Solvent-free synthesis of new metalphosphite structures varying from1D chain to2D slab and3D network[J].Inorganic Chemistry Communications,2013,31:79-82.
    [22] RAMASWAMY P, MANDAL S, HEGDE N N, et al. Synthesis, Structure, andMagnetic Properties of Amine-Templated Transition-Metal Phosphites[J].European Journal of Inorganic Chemistry,2010(12):1829-1838.
    [23] MANOUN B, EL BALI B, SAXENA S K, et al. High-pressure studies ofNaCo(H2PO3)(3)-H2O phosphite by Raman spectroscopy[J]. Journal ofMolecular Structure,2008,876(1-3):250-254.
    [24] LIN Z E, FAN W, GAO F F, et al. A novel layered bimetallic phosphiteintercalating with organic amines: Synthesis and characterization ofCo(H2O)4Zn4(HPO3)6·C2N2H10[J]. Journal of Solid State Chemistry,2006,179(3):723-728.
    [25] CHANG W K, WUR C S, WANG S L, et al. Hydrothermal synthesis andcharacterization of two cobalt phosphates based on double-four-ring units withfluorine-occlusion and phosphite-substitution modifications[J]. InorganicChemistry,2006,45(17):6622-6627.
    [26] LIU W, CHEN H H, YANG X X, et al. Two novel transition-metal phosphitecompounds with4-,6-and12-membered rings: Hydrothermal syntheses,crystal structures and magnetic properties of Na2M(HPO3)2(M=Fe, Co)[J].European Journal of Inorganic Chemistry,2005(5):946-951.
    [27] FERNANDEZ-ARMAS S, MESA J L, PIZARRO J L, et al. Two newtwo-dimensional organically templated phosphite compounds:(C6H16N2)0.5M(HPO3)F, M=Fe(II) and Co(II): Solvothermal synthesis,crystal structures, thermal, spectroscopic, and magnetic properties[J]. Journalof Solid State Chemistry,2005,178(11):3554-3562.
    [28] CHE R C, PENG L M,ZHOU W Z Synthesis and characterization ofcrystalline microporous cobalt phosphite nanowires[J]. Applied PhysicsLetters,2005,87(17).
    [29] FERNANDEZ S, MESA J L, PIZARRO J L, et al. Magnetic behavior ofinorganic-organic hybrid phosphite compounds with3-d transition metals[J].Journal of Magnetism and Magnetic Materials,2004,272:1113-1115.
    [30] ZHAO L, LI J Y, CHERI P, et al.2H3O·Co8(HPO3)9(CH3OH)3·2H2O: Anopen-framework cobalt phosphite containing extra-large18-ring channels[J].Chemistry of Materials,2008,20(1):17-19.
    [31] KURMOO M, KUMAGAI H, HUGHES S M, et al. Reversible guestexchange and ferrimagnetism (T-C-60.5K) in a porous cobalt(II)-hydroxidelayer structure pillared with trans-1,4-cyclohexanedicarboxylate[J]. InorganicChemistry,2003,42(21):6709-6722.
    [32] SAINT, Bruker AXS Inc.,5465East Cheryl Parkway, Madison, WI,53711-5373, USA,2000.
    [33] SHELXTL, Bruker AXS Inc.,5465East Cheryl Parkway, Madison, WI,53711-5373, USA,2000.
    [34] NIST data base for XPS core levels.
    [35] PEEDIKAKKAL A M P, SONG Y M, XIONG R G, et al. Cobalt(II)Coordination Polymers Containing trans-1,2-Bis(4-pyridyl)ethene and TheirMagnetic Properties[J]. European Journal of Inorganic Chemistry,2010(24):3856-3865.
    [36] KAHN O.Molecular magnetism [M].New York: VCH.1993
    [37] FERNANDEZ S, PIZARRO J L, MESA J L, et al. Hydrothermal synthesis ofa new layered inorganic-organic hybrid cobalt(II) phosphite:(C2H10N2Co-3(HPO3)(4) crystal structure and spectroscopic and magnetic properties[J].International Journal of Inorganic Materials,2001,3(4-5):331-336.
    [38] LI G J, XING Y, LIU Y L, et al. Synthesis and characterization of a purelyinorganic open-framework bimetallic phosphite with intersecting12-and16-membered ring channels[J]. Zeitschrift Fur Anorganische Und AllgemeineChemie,2008,634(5):916-920.
    [39] LIN Z E, ZHANG J, ZHENG S T, et al. Synthesis and characterization of anew hybrid zinc phosphite (4,4'-bipy)·Zn(HPO3)2with a pillared layerstructure[J]. Microporous and Mesoporous Materials,2004,68(1-3):65-70.
    [40] LIN Z E, ZHANG M, ZHENG S T, et al. A novel open-framework zincphosphite, Zn3(HPO3)4Ni(en)2(H2O)2, templated by a transition-metalcomplex[J]. European Journal of Inorganic Chemistry,2004(5):953-955.
    [41] YANG Y, ZHAO Y N,YU J G Synthesis and structure of manganese zincphosphate-phosphite with extra large twenty-membered ring channels[J].Chemical Journal of Chinese Universities-Chinese,2007,28(12):2252-2254.
    [42] LIU L, WANG X F, XU L, et al. Synthesis, characterization and magneticproperties of a novel fluorinated iron phosphite Fe2(HPO3)F2with infinite-Fe-F-Fe-O-Fe-linkage and-Fe-F-Fe-layer[J]. Inorganica Chimica Acta,2009,362(10):3881-3884.
    [43] ZHANG H, WANG L P, SONG T Y, et al. New3D Framework Vanadium(III)Phosphite with One-dimensional4,12-Member Ring Channels[J]. ChemicalResearch in Chinese Universities,2009,25(4):417-420.
    [44] LIANG J, LI J Y, YU J H, et al. Ni(C6N2H14)2Zn4(H2O)(HPO3)5: A newopen-framework zinc phosphite with intersecting8-,12-and16-ringchannels[J]. Journal of Solid State Chemistry,2006,179(7):1977-1983.
    [45] FERNANDEZ-ARMAS S, MESA J L, PIZARRO J L, et al. Parametrizationof the magnetic behavior of the triangular spin ladder chains organicallytemplated:(C2N2H10)M(HPO3)F3(MIII=Fe, Cr, and V). Crystal structure andthermal and spectroscopic properties of the iron(III) phase[J]. InorganicChemistry,2006,45(8):3240-3248.
    [46] WANG J L, LUO D B, LUO X C, et al. Open-Framework BerylliumPhosphites with Layered Structures[J]. European Journal of InorganicChemistry,2011(32):4949-4953.
    [47] YANG Y, ZHAO Y N, YU J G, et al. Two neutral open-framework metalphosphites with ten-ring channels constructed by three-, four-, andfive-connected centers[J]. Chemistry Letters,2008,37(7):678-679.
    [48] ZHOU G P, YANG Y L, FAN R Q, et al. Hydrothermal synthesis andcharacterization of a new organically templated three-dimensionalopen-framework gallium phosphate-phosphite(C6N2H18)2(C6N2H17)Ga15(OH)8(PO4)2(HPO4)12(HPO3)6·2H2O[J]. Solid StateSciences,2010,12(7):1103-1106.
    [49] HUANG L L, SONG T Y, FAN Y, et al. Hydrothermal syntheses,characterizations of novel three-dimensional indium phosphite and indiumphosphite-phosphate with intersecting8-membered ring channels:In3(H2PO3)3(HPO3)4·(trans-C6N2H16) andIn6(HPO3)8(H2PO3)5(H2PO4)·(C3N2H12)2[J]. Microporous and MesoporousMaterials,2010,132(3):409-413.
    [50] HUANG L L, SONG T Y, SHI S H, et al. Hydrothermal synthesis,characterization and fluorescence property of a novel layered fluorinatedgallium phosphite with heptameric building unit[J]. Journal of Solid StateChemistry,2008,181(6):1279-1284.
    [51] HUANG L L, SONG T Y, ZHANG L R, et al. Synthesis, crystal structure andcharacterization of a new layered gallium phosphiteGa(HPO3)F3·(trans-C6N2H16) with left-and right-handed helical chains[J].Crystengcomm,2010,12(7):2198-2202.
    [52] LI C X, HUANG L L, ZHOU M D, et al. Synthesis, structure andcharacterization of two new open-framework gallium phosphite-oxalates ofvarying dimensionality[J]. Journal of Solid State Chemistry,2013,208:86-92.
    [53] DONG Z J, ZHAO L, LIANG Z Q, et al. Zn(HPO3)(C11N2O2H12) andZn3(H2O)(PO4)(HPO4)(C6H9N3O2)2(C6H8N3O2): homochiral zincphosphite/phosphate networks with biofunctional amino acids[J]. DaltonTransactions,2010,39(23):5439-5445.
    [54] LIANG J, LI J Y, YU J H, et al. Synthesis and characterization of two newopen-framework zinc phosphites M(C6N4H18)Zn3(HPO3)4(M=Ni, Co) withmulti-directional intersecting12-membered ring channels[J]. Journal of SolidState Chemistry,2005,178(9):2673-2679.
    [55] WANG X L, YAN Y, WU J B, et al. Synthesis and Characterization of anInorganic-Organic Hybrid Framework Phosphite Containing InfiniteEdge-Sharing Cobalt Chains[J]. Zeitschrift Fur Anorganische Und AllgemeineChemie,2013,639(12-13):2343-2346.
    [56] XIANG Y, ZHANG L W, CHEN W H, et al. Synthesis and characterization ofa new organically templated aluminophosphite with a chainlike structure[J].Zeitschrift Fur Anorganische Und Allgemeine Chemie,2007,633(10):1727-1730.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700