Effect of Mass Transport on the Electrochemical Oxidation of Alcohols Over Electrodeposited Film and Carbon-Supported Pt Electrodes

被引:0
|
作者
Vinod Kumar Puthiyapura
Wen-Feng Lin
Andrea E. Russell
Dan J. L. Brett
Christopher Hardacre
机构
[1] The University of Manchester,School of Chemical Engineering and Analytical Science
[2] Loughborough University,Department of Chemical Engineering
[3] University of Southampton,Department of Chemistry
[4] University College London (UCL),Department of Chemical Engineering
来源
Topics in Catalysis | 2018年 / 61卷
关键词
Direct alcohol fuel cells; Rotating disk electrode (RDE); Electro-oxidation; Methanol; Ethanol; Butanol; Platinum;
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摘要
Electrochemical oxidation of four different alcohol molecules (methanol, ethanol, n-butanol and 2-butanol) at electrodeposited Pt film and carbon-supported Pt catalyst film electrodes, as well as the effect of mass transport on the oxidation reaction, has been studied systematically using the rotating disk electrode (RDE) technique. It was shown that oxidation current decreased with an increase in the rotation rate (ω) for all alcohols studied over electrodeposited Pt film electrodes. In contrast, the oxidation current was found to increase with an increase in the ω for Pt/C in ethanol and n-butanol-containing solutions. The decrease was found to be nearly reversible for ethanol and n-butanol at the electrodeposited Pt film electrode ruling out the possibility of intermediate COads poisoning being the sole cause of the decrease and was attributed to the formation of soluble intermediate species which diffuse away from the electrode at higher ω. In contrast, an increase in the current with an increase in ω for the carbon supported catalyst may suggest that the increase in residence time of the soluble species within the catalyst layer, results in further oxidation of these species. Furthermore, the reversibility of the peak current on decreasing the ω could indicate that the surface state has not significantly changed due to the sluggish reaction kinetics of ethanol and n-butanol.
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页码:240 / 253
页数:13
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