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铂/锌合金的电化学形成及其作为燃料电池中氧还原反应催化剂的应用。

Electrochemical formation of a Pt/Zn alloy and its use as a catalyst for oxygen reduction reaction in fuel cells.

作者信息

Sode Aya, Li Winton, Yang Yanguo, Wong Phillip C, Gyenge Elod, Mitchell Keith A R, Bizzotto Dan

机构信息

Department of Chemistry, Advanced Materials Process and Engineering Laboratory, University of British Columbia, Vancouver, British Columbia V6T 1Z4, Canada.

出版信息

J Phys Chem B. 2006 May 4;110(17):8715-22. doi: 10.1021/jp055350s.

Abstract

The characterization of an electrochemically created Pt/Zn alloy by Auger electron spectroscopy is presented indicating the formation of the alloy, the oxidation of the alloy, and the room temperature diffusion of the Zn into the Pt regions. The Pt/Zn alloy is stable up to 1.2 V/RHE and can only be removed with the oxidation of the base Pt metal either electrochemically or in aqua regia. The Pt/Zn alloy was tested for its effectiveness toward oxygen reduction. Kinetics of the oxygen reduction reaction (ORR) were measured using a rotating disk electrode (RDE), and a 30 mV anodic shift in the potential of ORR was found when comparing the Pt/Zn alloy to Pt. The Tafel slope was slightly smaller than that measured for the pure Pt electrode. A simple procedure for electrochemically modifying a Pt-containing gas diffusion electrode (GDE) with Zn was developed. The Zn-treated GDE was pressed with an untreated GDE anode, and the created membrane electrode assembly was tested. Fuel cell testing under two operating conditions (similar anode and cathode inlet pressures, and a larger cathode inlet pressure) indicated that the 30 mV shift observed on the RDE was also evident in the fuel cell tests. The high stability of the Pt/Zn alloy in acidic environments has a potential benefit for fuel cell applications.

摘要

本文介绍了通过俄歇电子能谱对电化学制备的Pt/Zn合金进行的表征,结果表明了合金的形成、合金的氧化以及锌在室温下向Pt区域的扩散。Pt/Zn合金在高达1.2 V/RHE的电位下是稳定的,只有通过电化学方法或在王水中氧化基底Pt金属才能将其去除。对Pt/Zn合金的氧还原有效性进行了测试。使用旋转圆盘电极(RDE)测量了氧还原反应(ORR)的动力学,与Pt相比,当使用Pt/Zn合金时,ORR电位出现了30 mV的阳极偏移。塔菲尔斜率略小于纯Pt电极的测量值。开发了一种用锌对含Pt气体扩散电极(GDE)进行电化学改性的简单方法。将经锌处理的GDE与未经处理的GDE阳极压在一起,并对制成的膜电极组件进行了测试。在两种操作条件下(相似的阳极和阴极入口压力,以及较大的阴极入口压力)进行的燃料电池测试表明,在RDE上观察到的30 mV偏移在燃料电池测试中也很明显。Pt/Zn合金在酸性环境中的高稳定性对燃料电池应用具有潜在的益处。

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