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Electrochemical synthesis and characterization of conducting polyparaphenylene using room-temperature melt as the electrolyte

机译:以室温熔体为电解质的导电聚对苯撑的电化学合成与表征

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Freestanding polyparaphenylene films were obtained on polymerization of benzene at potential of 1.2V versus Al wire on substrates like platinum/transparent conducting glass as an anode. The electrolyte used was chloroaluminate room-temperature melt, which was prepared by intimate mixing of a 1:2 ratio of cetyl pyridinium chloride and anhydrous aluminum chloride to yield a viscous liquid. This liquid was miscible in all proportions with benzene and other aromatic hydrocarbons in all proportions at room temperature. The polyparaphenylene films deposited on platinum anode exhibited a prominent cyclic voltammetric peak at 0.7 V versus Al wire as reference electrode in chloroaluminate medium. The impedance spectra gave low charge transfer resistance. The diffused reflectance electronic spectra of the film gave the peaks at 386 nm and 886 nm. The PPP films showed electronic conductivity around 3-4 X 10~4 S/cm by four probe method under nitrogen atmosphere. The polymer was also characterized by IR spectra, thermal studies, and SEM studies.
机译:在苯(例如铂/透明导电玻璃)为阳极的基板上,以1.2V电位的苯与铝线聚合,获得了独立的聚对亚苯基膜。所用的电解质是氯铝酸盐室温熔体,其是通过将鲸蜡基吡啶鎓氯化物和无水氯化铝以1:2的比例充分混合以制备粘稠液体而制备的。在室温下,该液体可与所有比例的苯和其他芳族烃混溶。相对于铝线作为参比电极,在氯铝酸盐介质中,沉积在铂阳极上的聚对苯撑薄膜在0.7 V处显示出明显的循环伏安峰。阻抗谱给出低的电荷转移电阻。膜的漫反射电子光谱在386 nm和886 nm处出现峰。在氮气气氛下,通过四探针法,PPP薄膜的电子电导率约为3-4 X 10〜4 S / cm。该聚合物还通过IR光谱,热学和SEM研究来表征。

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