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Self-assembly of organogels via new luminol imide derivatives: diverse nanostructures and substituent chain effect
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  • 作者:Tifeng Jiao (1) (2)
    Qinqin Huang (1)
    Qingrui Zhang (1)
    Debao Xiao (1)
    Jingxin Zhou (1)
    Faming Gao (1)
  • 关键词:Nanostructure ; Self ; assembly ; Organogel ; Luminol derivative ; Substituent group effect
  • 刊名:Nanoscale Research Letters
  • 出版年:2013
  • 出版时间:December 2013
  • 年:2013
  • 卷:8
  • 期:1
  • 全文大小:695KB
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  • 作者单位:Tifeng Jiao (1) (2)
    Qinqin Huang (1)
    Qingrui Zhang (1)
    Debao Xiao (1)
    Jingxin Zhou (1)
    Faming Gao (1)

    1. Hebei Key Laboratory of Applied Chemistry, School of Environmental and Chemical Engineering, Yanshan University, Qinhuangdao, 066004, China
    2. State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou, 730000, China
  • ISSN:1556-276X
文摘
Luminol is considered as an efficient sycpstem in electrochemiluminescence (ECL) measurements for the detection of hydrogen peroxide. In this paper, new luminol imide derivatives with different alkyl substituent chains were designed and synthesized. Their gelation behaviors in 26 solvents were tested as novel low molecular mass organic gelators. It was shown that the length and number of alkyl substituent chains linked to a benzene ring in gelators played a crucial role in the gelation behavior of all compounds in various organic solvents. Longer alkyl chains in molecular skeletons in present gelators are favorable for the gelation of organic solvents. Scanning electron microscope and atomic force microscope observations revealed that the gelator molecules self-assemble into different micro/nanoscale aggregates from a dot, flower, belt, rod, and lamella to wrinkle with change of solvents. Spectral studies indicated that there existed different H-bond formations and hydrophobic forces, depending on the alkyl substituent chains in molecular skeletons. The present work may give some insight to the design and characteristic of new versatile soft materials and potential ECL biosensors with special molecular structures.

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