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Reduction of hexavalent chromium at a polypyrrole-coated aluminium electrode: Synergistic interactions

机译:聚吡咯涂层铝电极上六价铬的还原:协同作用

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Adherent polypyrrole films were electropolymerized from a tosylic acid solution onto an aluminium substrate and used for the reduction of Cr(VI). The reduction of Cr(VI) to the trivalent state was found to proceed by pseudo-first-order kinetics with an activation energy barrier of 15.13 kJ mol−1. This catalyst could be regenerated by reducing the composite at a sufficiently negative potential, in the absence of Cr(VI). However, it was found that the catalyst functioned also through a self-sustained regeneration mechanism. In this mechanism, Cr(VI) was reduced by PPy0 to generate PPy+, but the PPy+ was subsequently reduced to PPy0 by oxidation of the aluminium substrate, thus regeneration of the catalytic PPy0 surface giving rise to a synergistic action between the polypyrrole and the aluminium substrate.
机译:将粘附的聚吡咯膜从甲苯磺酸溶液电聚合到铝基材上,并用于还原Cr(VI)。发现Cr(VI)还原为三价态是通过拟一阶动力学进行的,活化能垒为15.13 kJ mol-1 。在不存在Cr(VI)的情况下,可以通过在足够负电势下还原复合材料来再生该催化剂。但是,发现该催化剂还通过自我维持的再生机理起作用。在这种机制下,Cr(VI)被PPy0 还原生成PPy + ,但随后通过铝基板的氧化将PPy + 还原为PPy0 ,从而再生了催化PPy0 表面在聚吡咯和铝基质之间产生协同作用。

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