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Electropolymerization on wireless electrodes towards conducting polymer microfibre networks

机译:无线电极上的电聚合作用朝向导电聚合物微纤维网络

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摘要

Conducting polymers can be easily obtained by electrochemical oxidation of aromatic monomers on an electrode surface as a film state. To prepare conducting polymer fibres by electropolymerization, templates such as porous membranes are necessary in the conventional methods. Here we report the electropolymerization of 3,4-ethylenedioxythiophene and its derivatives by alternating current (AC)-bipolar electrolysis. Poly(3,4-ethylenedioxythiophene) (PEDOT) derivatives were found to propagate as a fibre form from the ends of Au wires used as bipolar electrodes (BPEs) parallel to an external electric field, without the use of templates. The effects of applied frequency and of the solvent on the morphology, growth rate and degree of branching of these PEDOT fibres were investigated. In addition, a chain-growth model for the formation of conductive material networks was also demonstrated.
机译:通过将电极表面上的芳香族单体以膜状态进行电化学氧化,可以容易地获得导电聚合物。为了通过电聚合制备导电聚合物纤维,在常规方法中需要模板例如多孔膜。在这里,我们报告通过交流电(AC)-双极电解进行3,4-乙撑二氧噻吩及其衍生物的电聚合。发现聚(3,4-乙撑二氧噻吩)(PEDOT)衍生物从用作平行于外部电场的双极电极(BPE)的金导线的末端以纤维形式传播,无需使用模板。研究了施加频率和溶剂对这些PEDOT纤维的形态,生长速率和支化度的影响。此外,还证明了用于形成导电材料网络的链增长模型。

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