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Surface functionality and electrochemical investigations of a graphitic electrode as a candidate for alkaline energy conversion and storage devices

机译:石墨电极作为碱性能量转换和存储设备的候选材料的表面功能和电化学研究

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摘要

Graphite is a typical electrocatalyst support in alkaline energy conversion and storage devices such as fuel cells, supercapacitores and lithium ion batteries. The electrochemical behaviour of a graphite electrode in 0.5 M NaOH was studied to elucidate its surface structure/electrochemical activity relationship. Graphite voltammograms are characterized by an anodic shoulder AI and a cathodic peak CI in addition to the oxygen reduction reaction plateaus, PI and PII. AI and CI were attributed to oxidation and reduction of some graphite surface function groups, respectively. Rotating ring disk electrode (RRDE) study revealed two different oxygen types assigned as inner and outer oxygen. The inner oxygen was reduced via the more efficient 4-electron pathway. The outer oxygen reduction proceeded with a lower efficient 2-electron pathway. The calculated percentages of the 4-electron pathway were ranged from 70% to 90%. A full mechanism for the graphite surface function groups changes over the studied potential window was suggested through the combination between the voltammetric, FT-IR and Raman results.
机译:石墨是碱性能量转换和存储设备(例如燃料电池,超级电容器和锂离子电池)中的典型电催化剂载体。研究了石墨电极在0.5 M NaOH中的电化学行为,以阐明其表面结构/电化学活性之间的关系。石墨伏安图的特征在于,除了氧气还原反应平台PI和PII以外,还带有阳极肩AI和阴极峰CI。 AI和CI分别归因于某些石墨表面官能团的氧化和还原。旋转环盘电极(RRDE)研究显示了分配为内部和外部氧气的两种不同的氧气类型。内部氧通过更有效的4-电子途径被还原。外部氧还原以较低的有效2-电子途径进行。 4-电子途径的计算百分比范围为70%至90%。通过伏安,FT-IR和拉曼结果的组合,提出了石墨表面官能团在所研究的电位窗口范围内变化的完整机制。

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