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Influence of anodic oxidation of glassy carbon surface on voltammetric behavior of Nafion -coated glassy carbon electrodes

机译:玻碳表面阳极氧化对Nafion涂层玻碳电极伏安行为的影响

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摘要

To improve the performance of proton-exchange membrane fuel cells (PEMFCs), it is necessary to optimize the structure of the interface between polymer electrolyte and catalyst particles in the electrodes of PEMFCs. However, the interaction at the interface between electrodes and the perfluorosulfonate ionomer used in PEMFCs has not yet been sufficiently clarified. In the present study, the Nafion /glassy carbon (GC) interface was investigated using cyclic voltammetry at a GC disk electrode with its surface electrochemically oxidized to impart hydrophilicity. The surface oxidation generated oxygen-containing surface functional groups, especially quinone-like ones. The contact angle of water drops on the surface-oxidized GC decreased with increase in surface-oxidation time. Using as an index the charge consumed in the positive and negative scans of cyclic voltammetry, evaluation was performed of the ration on the GC surface of the hydrophilic ionic cluster region, where electrode reactions occur on Nafion-coated GC electrodes. The ionic cluster region at the interface expanded with increase in surface-oxidation time. This behavior electrodes was attributed to weakening of the interaction between the hydrophobic perfluorocarbon region and the GC surface. This dependency suggests the possibility of controlling the structure of the interface between Nafion and carbon.
机译:为了改善质子交换膜燃料电池(PEMFC)的性能,有必要优化PEMFCs的电极中的聚合物电解质和催化剂颗粒之间的界面的结构。但是,尚未充分阐明电极与PEMFC中使用的全氟磺酸离聚物之间的界面处的相互作用。在本研究中,使用循环伏安法在GC圆盘电极上对Nafion /玻璃碳(GC)界面进行了研究,其表面被电化学氧化以赋予亲水性。表面氧化产生含氧的表面官能团,尤其是醌类官能团。水滴在表面氧化GC上的接触角随表面氧化时间的增加而减小。使用在循环伏安法的正扫描和负扫描中消耗的电荷作为指标,评估亲水离子簇区域的GC表面的配给率,在该表面上,电极反应发生在涂有Nafion的GC电极上。随着表面氧化时间的增加,界面处的离子簇区域扩大。该行为电极归因于疏水性全氟化碳区域与GC表面之间相互作用的减弱。这种依赖性暗示了控制Nafion和碳之间的界面结构的可能性。

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