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Electrodeposited metals at conducting polymer electrodes I—Effect of particle size and film thickness on electrochemical response

机译:导电聚合物电极上的电沉积金属I—粒径和膜厚对电化学响应的影响

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摘要

Conducting polymers are electrochemically polymerized at platinum electrode substrates. The thickness, porosity and surface morphology of the resulting films are controlled by the charge passing during electropolymerization step and the synthesis conditions. The polymer films are modified by electrochemically depositing platinum particles. The technique of deposition depends on applying a programmed potential pulse at the polymer film from a solution containing platinum complex that resulted in the formation of platinum particles of controlled size and distribution. The effect of changing the size of platinum particles and polymer film thickness on the voltammetric behavior of the resulting hybrid material showed noticeable changes in the electro-catalytic current in acid medium. On the other hand, the electrochemical impedance spectroscopy experiments showed that diffusion and charge-transfer rate increased in the order: unmodified polymer films, thin polymer films containing small size/amount of platinum particles and relatively thick polymer films containing larger size/amount of platinum particles. The morphology of polymer films, size and distribution of platinum particles in the film were studied by scanning electron microscopy. The presence of platinum and its distribution over the film surface was confirmed from the X-ray dispersive analysis and surface mapping. The hybrid materials are good candidates for the application in devices for exchange of hydrogen ions.
机译:导电聚合物在铂电极基材上进行电化学聚合。所得膜的厚度,孔隙率和表面形态由电聚合步骤和合成条件期间通过的电荷控制。通过电化学沉积铂颗粒对聚合物膜进行改性。沉积技术取决于从包含铂络合物的溶液向聚合物膜施加编程的电势脉冲,从而导致形成尺寸和分布可控的铂颗粒。改变铂颗粒尺寸和聚合物膜厚度对所得杂化材料的伏安行为的影响显示出在酸性介质中电催化电流的显着变化。另一方面,电化学阻抗谱实验表明扩散和电荷转移速率依次增加:未改性的聚合物膜,包含小尺寸/数量的铂颗粒的薄聚合物膜和相对大的包含较大尺寸/数量的铂的聚合物膜。粒子。通过扫描电子显微镜研究了聚合物薄膜的形态,薄膜中铂颗粒的大小和分布。通过X射线色散分析和表面映射确认了铂的存在及其在膜表面上的分布。杂化材料是用于氢离子交换装置中的良好候选材料。

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