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首页> 外文期刊>RSC Advances >Anhydrous proton conduction in liquid crystals containing benzimidazole moieties
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Anhydrous proton conduction in liquid crystals containing benzimidazole moieties

机译:含有苯并咪唑部分的液晶中的无水质子传导

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A homologous series of biphenyl benzoate-based compounds with an alkthio chain bearing a benzimidazole moiety at the termini was synthesized by a nucleophilic substitution reaction. The compounds exhibited smectic A and nematic phases over a temperature range of 173–116 °C during the cooling process. A partially interdigitated bilayer order developed in the smectic assemblies and hydrogen-bonding between the benzimidazole moieties extended along the plane parallel to the smectic layer. Electrochemical characterization revealed that the liquid crystal phases favoured anhydrous proton conduction in the benzimidazole compounds and a proton conductivity of 4.4 × 10 ~(?5) S cm ~(?1) was achieved at 173 °C. The temperature dependence of the proton conductivities approximately followed the Arrhenius law and the proton conduction in the benzimidazole liquid crystals was assumed to be dominated by the proton hopping mechanism.
机译:通过亲核取代反应合成了在末端的与亚苯胺唑部分承载苯并咪唑部分的链条的同源苯甲酸苯甲酸苯甲酸酯系列。该化合物在冷却过程中在173-116℃的温度范围内展示了近晶的A和向列相。在椎体组件中开发的部分间隔的双层顺序,沿着平行于椎间络合延伸的苯并咪唑部分之间的氢键合。电化学表征显示,液晶相有利于苯并咪唑化合物中无水质子传导,在173℃下实现4.4×10〜(α5)Cm〜(α1)的质子电导率。假设质子电导率大约遵循的苯并尼斯液晶中的质子传导和质子传导依赖于苯并咪唑液晶中的质子传导,以质子跳跃机制为主。

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