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The use of a hierarchically platinum-free electrode composed of tin oxide decorated polypyrrole on nanoporous copper in catalysis of methanol electrooxidation

机译:在纳米孔铜上使用由氧化锡修饰的聚吡咯组成的无层次铂电极在甲醇电氧化催化中的用途

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摘要

Tin oxide nanoparticles were synthesized through a galvanostatic pathway on polypyrrole, PPy, coated nanoporous copper. The morphology and surface analysis of the assemblies were evaluated by field emission scanning electron microscopy, FESEM, and energy dispersive X-ray, EDX, analysis, respectively. The electrocatalytic behavior of electrodes was studied by cyclic voltammetry and chronoamperometry tests in methanol solution. FESEM results showed that uniformly distributed nanoparticles with diameters of about 20-30 nm have been dispersed on PPy matrix. Cyclic voltammetry and chronoamperometry tests in methanol solution showed a significant enhancement in the catalytic action of PPy after decoration of tin oxide nanoparticles. Porous Cu/PPy/SnOx electrodes showed enhanced anodic peak current density for methanol oxidation compared to smooth Cu/PPy/SnOx and porous Cu/PPy. The effects of synthesis current density and time on the electrocatalytic behavior of the electrodes were evaluated. The significant enhancement of electrocatalytic behavior of the Cu/PPy electrode after decoration of SnOx overlayer was attributed to the effect of tin oxide on the adsorption of intermediates of methanol oxidation as well as oxidation of bi-products such as CO; huge tendency of tin oxides for dehydrogenation of the alcohols and the increase in microscopic surface area of the electrodes were introduced as other affecting factors. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过在聚吡咯,PPy,涂覆的纳米多孔铜上的恒流途径合成了氧化锡纳米颗粒。组件的形貌和表面分析分别通过场发射扫描电子显微镜FESEM和能量色散X射线EDX分析进行评估。通过循环伏安法和计时安培法在甲醇溶液中研究了电极的电催化行为。 FESEM结果表明,直径约20-30nm的均匀分布的纳米颗粒已经分散在PPy基质上。甲醇溶液中的循环伏安法和计时电流法测试表明,装饰氧化锡纳米粒子后,PPy的催化作用显着增强。与光滑的Cu / PPy / SnOx和多孔的Cu / PPy相比,多孔的Cu / PPy / SnOx电极在甲醇氧化中显示出增强的阳极峰值电流密度。评估了合成电流密度和时间对电极电催化行为的影响。 SnOx覆盖层装饰后,Cu / PPy电极的电催化性能的显着提高归因于氧化锡对甲醇氧化中间体的吸附以及副产物(如CO)的氧化的影响。其他影响因素还包括氧化锡对醇类脱氢的巨大趋势和电极微观表面积的增加。 (C)2015 Elsevier B.V.保留所有权利。

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