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Alcohol-Responsive, Hydrogen-Bonded, Cholesteric Liquid-Crystal Networks

机译:酒精敏感,氢键,胆甾醇型液晶网络

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摘要

Hydrogen-bridged, cholesteric liquid-crystal (CLC) polymer networks are adopted as an optical sensor material to distinguish between ethanol and methanol. Fast uptake of the alcohols is facilitated by an incorporated porosity created by breaking the hydrogen bridges and by a previously removed non-reactive liquid-crystal agent. The discrimination between the alcohols is based on the diversity in molecular affinity of ethanol and methanol with the hydrogen-bridged CLC polymer networks. The CLC networks are molecular-helix-based, one-dimensional bandgap materials with a discrete reflection band in the visible part of the spectrum that depends on the pitch of the molecular helix. The changes in positions of the reflection bands of the CLC network accurately discriminate between the alcohol types and provide information on their ratio in case they are blended.
机译:氢桥胆甾型液晶(CLC)聚合物网络被用作光学传感器材料,以区分乙醇和甲醇。通过破坏氢桥和先前除去的非反应性液晶剂而产生的结合孔隙度促进了醇的快速摄取。醇之间的区别基于乙醇和甲醇与氢桥联的CLC聚合物网络的分子亲和力的多样性。 CLC网络是基于分子螺旋的一维带隙材料,在光谱的可见光部分具有离散的反射带,这取决于分子螺旋的螺距。 CLC网络反射带位置的变化可准确地区分酒精类型,并在混合酒精时提供有关其比例的信息。

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  • 来源
    《Advanced Functional Materials》 |2012年第13期|p.2855-2859|共5页
  • 作者单位

    Functional Materials and Devices Eindhoven University of Technology P.O. Box 513, 5600 MB, Eindhoven, The Netherlands,Materials and Chemical Research Laboratory Industrial Technology Research Institute 31040, Hsinchu, Taiwan;

    Functional Materials and Devices Eindhoven University of Technology P.O. Box 513, 5600 MB, Eindhoven, The Netherlands,School of Engineering and Materials Science Queen Mary University of London Mile End Road, London El 4NS, London, UK;

    Functional Materials and Devices Eindhoven University of Technology P.O. Box 513, 5600 MB, Eindhoven, The Netherlands;

    Materials and Chemical Research Laboratory Industrial Technology Research Institute 31040, Hsinchu, Taiwan;

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