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通过表面增强红外吸收光谱研究酸性溶液中钯上的甲酸电氧化。

Formic acid electrooxidation on Pd in acidic solutions studied by surface-enhanced infrared absorption spectroscopy.

作者信息

Miyake Hiroto, Okada Tatsuhiro, Samjeské Gabor, Osawa Masatoshi

机构信息

National Institute of Advanced Industrial Science and Technology, Higashi 1-1-1, Central 5, Tsukuba, Ibaraki 305-8565, Japan.

出版信息

Phys Chem Chem Phys. 2008 Jul 7;10(25):3662-9. doi: 10.1039/b805955a. Epub 2008 May 27.

Abstract

A mechanistic study of electrocatalytic oxidation of formic acid on Pd in sulfuric and perchloric acids is reported. Surface-enhanced infrared absorption spectroscopy in the attenuated total reflection mode (ATR-SEIRAS) shows the adsorption of CO, bridge-bonded formate, bicarbonate, and supporting anions on the electrode surface. Poisoning of the Pd surface by CO, formed by dehydration of formic acid, is very slow and scarcely affects formic acid oxidation. The anions are adsorbed more strongly in the order of (bi)sulfate > bicarbonate > perchlorate, among which the most strongly adsorbed (bi)sulfate considerably suppresses formic acid oxidation in the double layer region. The oxidation is suppressed also at higher potentials in both acids by the oxidation of the Pd surface. Adsorbed formate is detected only when formic acid oxidation is suppressed. The results show that formate is a short-lived reactive intermediate in formic acid oxidation and is hence detected when its decomposition yielding CO(2) is suppressed. The high electrocatalytic activity of Pd can be ascribed to the high tolerance to CO contamination and also high catalytic activity toward formate decomposition.

摘要

报道了在硫酸和高氯酸中钯上甲酸电催化氧化的机理研究。衰减全反射模式(ATR-SEIRAS)下的表面增强红外吸收光谱表明,CO、桥式键合甲酸盐、碳酸氢盐和支持阴离子吸附在电极表面。由甲酸脱水形成的CO对钯表面的毒化非常缓慢,几乎不影响甲酸氧化。阴离子的吸附强度顺序为(亚)硫酸根>碳酸氢根>高氯酸根,其中吸附最强的(亚)硫酸根在双层区域显著抑制甲酸氧化。在两种酸中,较高电位下钯表面的氧化也会抑制氧化反应。仅当甲酸氧化受到抑制时才检测到吸附的甲酸盐。结果表明,甲酸盐是甲酸氧化过程中的一种短寿命反应中间体,因此当它分解生成CO₂的过程受到抑制时就能被检测到。钯的高电催化活性可归因于对CO污染的高耐受性以及对甲酸盐分解的高催化活性。

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