首页> 外文期刊>Journal of power sources >Electrochemical Oxidation Of Highly Oriented Pyrolytic Graphite During Potential Cycling In Sulfuric Acid Solution
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Electrochemical Oxidation Of Highly Oriented Pyrolytic Graphite During Potential Cycling In Sulfuric Acid Solution

机译:硫酸溶液中电位循环过程中高取向热解石墨的电化学氧化

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摘要

Oxidation of highly oriented pyrolytic graphite (HOPG) under potential cycling conditions is investigated to understand the stability of graphite used in polymer electrolyte fuel cells (PEFCs) under their dynamic operation conditions. Electrochemical methods, AFM and XPS are applied to examine the surface oxidation of HOPG. The current peaks corresponding to quinone-hydroquinone redox reaction begin to appear on cyclic voltammograms after potential cycling between 0.6V and 0.8 V vs. SHE (standard hydrogen electrode), indicating that the surface of HOPG is partially oxidized to form surface functional groups containing oxygen, whereas HOPG is relatively stable during potential cycling between 0.4V and 0.6V. An increase in potential range to 0.8-1.0 V extends the oxidation and forms pits on the surface of HOPG that is caused by the loss of surface carbon through the oxidation to gaseous products. The high rate of potential cycling accelerates the surface oxidation of HOPG.
机译:研究了高定向热解石墨(HOPG)在潜在循环条件下的氧化,以了解用于聚合物电解质燃料电池(PEFC)的石墨在其动态运行条件下的稳定性。电化学方法,AFM和XPS应用于检测HOPG的表面氧化。在相对于SHE(标准氢电极)的0.6V和0.8V之间的电势循环后,对应于醌-对苯二酚氧化还原反应的电流峰开始出现在循环伏安图上,表明HOPG的表面被部分氧化以形成含氧的表面官能团,而HOPG在0.4V至0.6V的电位循环期间相对稳定。电位范围增加到0.8-1.0 V会扩展氧化作用并在HOPG的表面上形成凹坑,这是由于表面碳因氧化而损失为气态产物而引起的。电位循环的高速率加速了HOPG的表面氧化。

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