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Highly Conductive and Soluble Polymer Synthesized by Copolymerization of Thiophene with Para-Methoxybenzaldehyde Using Clay Catalyst

机译:通过使用粘土催化剂与甲氧基苯甲醛共聚合成的高导电和可溶性聚合物。

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摘要

This present research focuses on the synthesis of a new conducting polymer based on the copolymerization of thiophene with para-methoxybenzaldehyde, using a clay as an ecologic catalyst named Maghnite-H+. The catalysis of the reaction by Maghnite-H+ can confer it important benefits, such as the green environment aspect. The reaction was carried out in dichloromethane as a solvent. The new copolymer obtained is a poly (heteroarylene methines) small bandgap polymers precursor. It can be considered as a useful model system for examining the impacts of π-conjugation length on the electronic properties of this type of conjugated polymers. The measurements of the electrical conductivity gave a value of order of 0.0120 W.cm-1, allowing its use in various important applications. The characteristics of the molecular structure and the thermal behavior of the conducting polymer obtained are also discussed using different methods of analysis, such as: proton nuclear magnetic resonance (NMR), Fourier transform infrared (FTIR) spectroscopy, ultraviolet/visible spectroscopy, and thermal gravimetric analysis (TGA). Copyright © 2019 BCREC Group. All rights reserved
机译:本发明研究侧重于基于噻吩与对甲氧基苯甲醛的共聚的新型导电聚合物的合成,使用粘土作为名为Maghnite-H +的生态催化剂。 Magnite-H +反应的催化可以赋予它的重要益处,例如绿色环境方面。将反应物在二氯甲烷中作为溶剂进行。得到的新共聚物是聚(杂芳基甲醚)小带隙聚合物前体。它可以被认为是用于检查π-缀合长度对这种类型的共轭聚合物的电子性质的影响的有用模型系统。电导率的测量值为0.0120 Wm-1的值,允许其在各种重要应用中使用。使用不同的分析方法讨论了所得传导聚合物的分子结构的特性和所得导电聚合物,例如:质子核磁共振(NMR),傅里叶变换红外(FTIR)光谱,紫外/可见光谱和热量重量分析(TGA)。版权所有©2019 BCRec组。版权所有

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