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首页> 外文期刊>Electrochimica Acta >Effect of fluorinated alcohol on the kinetics of cathodic oxygen reduction at gold electrodes
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Effect of fluorinated alcohol on the kinetics of cathodic oxygen reduction at gold electrodes

机译:氟化醇对金电极阴极氧还原动力学的影响

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摘要

The kinetics of oxygen reduction at Au was studied in 0.5 M H{sub}2SO{sub}4, in which a fluorinated alcohol, 2,2,3,3,3-pentafluoro- 1 -propanol (CF{sub}3CF{sub}2CH{sub}2OH) was added as a model of the fluorocarbon phase of Nafion in the electrodes of proton-exchange membrane fuel cells (PEMFCs). A rotating ring-disk electrode technique was used to detect intermediate H{sub}2O{sub}2 formation and to determine kinetic parameters for O{sub}2 reduction. Kinetic parameters such as the kinetic current, Tafel slope, the ratio of the direct four-electron reduction to the series two-electron reduction, and the rate constant for reduction of intermediate H{sub}2O{sub}2 were determined. The kinetic current increased with an increase in the concentration of CF{sub}3CF{sub}2CH{sub}2OH up to 1×10{sup}(-2) M, and then decreased with further addition. The rate constant for the reduction of intermediate H{sub}2O{sub}2 decreased monotonously by the addition of CF{sub}3CF{sub}2CH{sub}2OH over the whole concentration range tested. The increase in kinetic current was attributed to a higher concentration of O{sub}2 in the adsorption layer of CF{sub}3CF{sub}2CH{sub}2OH, while the decreases in kinetic current above 1×10{sup}(-2) M and in the rate constant were attributed to a decrease in the number of the reaction sites on Au surface.
机译:在0.5 MH {sub} 2SO {sub} 4中研究了Au处的氧还原动力学,其中氟化醇2,2,3,3,3,3-五氟-1-丙醇(CF {sub} 3CF {sub在质子交换膜燃料电池(PEMFC)的电极中添加} 2CH {sub} 2OH)作为Nafion碳氟化合物相的模型。旋转圆盘电极技术用于检测中间H {sub} 2O {sub} 2的形成并确定O {sub} 2还原的动力学参数。确定了动力学参数,例如动电流,塔菲尔斜率,直接四电子还原与串联两电子还原的比率以及中间H {sub} 2O {sub} 2的还原速率常数。动量随着CF {sub} 3CF {sub} 2CH {sub} 2OH浓度的增加而增加,直至1×10 {sup}(-2)M,然后随着进一步的增加而减小。通过在整个测试浓度范围内添加CF {sub} 3CF {sub} 2CH {sub} 2OH,单价降低了中间体H {sub} 2O {sub} 2的还原速率常数。动电流的增加归因于CF {sub} 3CF {sub} 2CH {sub} 2OH的吸附层中O {sub} 2的浓度较高,而动电流在1×10 {sup}( -2)M和速率常数归因于Au表面上反应位点数量的减少。

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