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用半导体光催化剂提高燃料电池性能:用于甲醇氧化的TiO2/Pt-Ru混合催化剂

Boosting fuel cell performance with a semiconductor photocatalyst: TiO2/Pt-Ru hybrid catalyst for methanol oxidation.

作者信息

Drew Kristine, Girishkumar G, Vinodgopal K, Kamat Prashant V

出版信息

J Phys Chem B. 2005 Jun 23;109(24):11851-7. doi: 10.1021/jp051073d.

Abstract

A hybrid carbon fiber electrode (CFE) consisting of TiO2 semiconductor photocatalyst and Pt-Ru catalyst has been developed to boost the performance of direct methanol fuel cells (DMFC). These two catalyst nanoparticles are deposited on opposite sides of the carbon fiber paper such that methanol oxidation is carried out catalytically on Pt-Ru and photocatalytically on TiO2 under UV-light irradiation. Since both catalysts carry out methanol oxidation independently, we observe an additive effect in the current generation. The carbon support fibers provide a large network to collect the electrons from both of these catalytic processes and thus assist in efficient current generation. In addition, TiO2 improves the performance of the Pt-Ru catalyst in dark, indicating possible surface area improvement or diminished poisoning effects. The concept of incorporating a photocatalyst provides new ways to minimize precious metal content and enhance the performance of DMFCs. At low catalyst loadings (0.15 mg/cm2) at 295 K, a 25% enhancement in the peak power density is observed upon illumination with light.

摘要

一种由二氧化钛半导体光催化剂和铂钌催化剂组成的混合碳纤维电极(CFE)已被开发出来,以提高直接甲醇燃料电池(DMFC)的性能。这两种催化剂纳米颗粒沉积在碳纤维纸的相对两侧,使得甲醇氧化在铂钌上进行催化,在紫外光照射下在二氧化钛上进行光催化。由于两种催化剂独立进行甲醇氧化,我们观察到在电流产生方面有加成效应。碳支撑纤维提供了一个大网络来收集来自这两个催化过程的电子,从而有助于高效产生电流。此外,二氧化钛在黑暗中提高了铂钌催化剂的性能,表明可能提高了表面积或减少了中毒效应。引入光催化剂的概念为最小化贵金属含量和提高DMFC性能提供了新方法。在295K下低催化剂负载量(0.15mg/cm²)时,光照下峰值功率密度提高了25%。

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