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首页> 外文期刊>Journal of Applied Polymer Science >Effect of the surface roughness of conducting polypyrrole thin-film electrodes on the electrocatalytic reduction of nitrobenzene
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Effect of the surface roughness of conducting polypyrrole thin-film electrodes on the electrocatalytic reduction of nitrobenzene

机译:导电聚吡咯薄膜电极的表面粗糙度对硝基苯电催化还原的影响

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摘要

Conducting polypyrrole (PPy) thin-film electrodes were prepared by the electropolymerization of pyrrole on gold-coated glass plates. Films of various roughnesses were obtained by the variation of the scan rates during electropolymerization. These thin films were modified by doping with 6mM of the dopant NiCl _2. The surface morphology of the films was studied by scanning electron microscopy and atomic force microscopy (AFM), which suggested films prepared with a high scan rate were rougher in nature than the films produced with a low scan rate. The electrocatalytic reduction of nitrobenzene was carried out with these electrodes with the cyclic voltammetry technique in acetonitrile containing 0.1M HClO _4 as a supporting electrolyte. The various results obtained show that the conducting PPy thin-film electrodes were catalytically active toward the electroreduction process. The modified PPy film electrodes doped with NiCl _2 were more active toward nitrobenzene electroreduction than the PPy film alone. The results indicate that the roughness of the films played a very important role in determining their catalytic activity. The PPy films that were more rough in nature were catalytically more active than the smooth films; this may have been due to the availability of more reactive sites in the case of rough films. The apparent diffusion coefficients of the PPy film electrodes were also calculated.
机译:导电聚吡咯(PPy)薄膜电极是通过吡咯在镀金玻璃板上进行电聚合制备的。通过电聚合过程中扫描速率的变化可以获得各种粗糙度的薄膜。通过掺杂6mM的NiCl _2掺杂剂对这些薄膜进行改性。通过扫描电子显微镜和原子力显微镜(AFM)研究了膜的表面形态,这表明以高扫描速率制备的膜本质上比以低扫描速率制备的膜更粗糙。用这些电极通过循环伏安法在含有0.1M HClO_4作为支持电解质的乙腈中进行电催化还原硝基苯。获得的各种结果表明,导电的PPy薄膜电极对电还原过程具有催化活性。掺杂有NiCl _2的改性PPy膜电极比单独的PPy膜对硝基苯电还原反应更具活性。结果表明,膜的粗糙度在确定其催化活性方面起着非常重要的作用。本质上更粗糙的PPy薄膜比光滑薄膜具有更高的催化活性。这可能是由于在粗糙薄膜的情况下可获得更多的反应位。还计算了PPy膜电极的表观扩散系数。

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