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Full electrochemical synthesis of conducting polymer films chemically grafted to conducting surfaces

机译:完全电化学合成化学接枝到导电表面的导电聚合物薄膜

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This paper reports on the full electrochemical synthesis of electrically conducting polymers chemically grafted to conducting surfaces (e.g., glassy carbon, stainless steel, nickel, gold). It is based on new functional acrylate monomers, i.e., 3-(2-acryloyloxyethyl)thiophene and N-(2-acryloyloxyethyl)pyrrole, whose the synthesis is reported in this work. The polymerization process consists of two electrochemical steps. The first one is the cathodic electrografting of polyacrylate chains bearing a precursor of the conducting polymer in the ester group, either thiophene or pyrrole. In the second step, this precursor is polymerized under anodic polarization, in the presence or not of additional unsubstituted monomer in the electrochemical bath. Cyclic voltammetry was used to confirm that the two-component film is conducting and electrochemically active (reversible doping and dedoping). The chemical composition and the microscopic morphology of these composites were characterized by X-ray photoelectron spectroscopy and atomic force microscopy, respectively. [References: 30]
机译:该论文报道了化学接枝到导电表面(例如玻璃碳,不锈钢,镍,金)的导电聚合物的完整电化学合成。它基于新的功能丙烯酸酯单体,即3-(2-丙烯酰氧基乙基)噻吩和N-(2-丙烯酰氧基乙基)吡咯,其合成已在这项工作中进行了报道。聚合过程包括两个电化学步骤。第一个是在酯基团(噻吩或吡咯)中带有导电聚合物前体的聚丙烯酸酯链的阴极电接枝。在第二步骤中,该前体在存在或不存在额外未取代单体的电化学浴中在阳极极化下聚合。循环伏安法用于确认两组分薄膜具有导电性和电化学活性(可逆掺杂和去掺杂)。通过X射线光电子能谱和原子力显微镜分别表征了这些复合材料的化学成分和微观形貌。 [参考:30]

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