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Conductive cotton prepared by polyaniline in situ polymerization using laccase

机译:用漆酶原位聚合聚苯胺制备的导电棉

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摘要

The high-redox-potential catalyst laccase, isolated from Aspergillus, was first used as a biocatalyst in the oxidative polymerization of water-soluble conductive polyaniline, and then conductive cotton was prepared by in situ polymerization under the same conditions. The polymerization of aniline was performed in a water dispersion of sodium dodecylbenzenesulfonate (SDBS) micellar solution with atmospheric oxygen serving as the oxidizing agent. This method is ecologically clean and permits a greater degree of control over the kinetics of the reaction. The conditions for polyaniline synthesis were optimized. Characterizations of the conducting polyaniline and cotton were carried out using Fourier transform infrared spectroscopy, UV–vis spectroscopy, cyclic voltammetry, the fabric induction electrostatic tester, and the far-field EMC shielding effectiveness test fixture.
机译:从曲霉中分离出的高氧化还原电位的催化剂漆酶首先被用作水溶性导电聚苯胺的氧化聚合反应的生物催化剂,然后在相同条件下通过原位聚合制备导电棉。苯胺的聚合是在十二烷基苯磺酸钠(SDBS)胶束溶液的水分散液中进行的,其中大气氧作为氧化剂。该方法在生态上是清洁的,并允许对反应动力学进行更大程度的控制。优化了聚苯胺合成的条件。使用傅里叶变换红外光谱,紫外可见光谱,循环伏安法,织物感应静电测试仪和远场EMC屏蔽效能测试夹具对导电聚苯胺和棉进行了表征。

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