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Comparative Study of PtNi Nanowire Array Electrodes toward Oxygen Reduction Reaction by Half-Cell Measurement and PEMFC Test

机译:半电池测量和PEMFC试验PTNI纳米线阵列电极对氧还原反应的比较研究

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摘要

A clear understanding of catalytic activity enhancement mechanisms in fuel cell operation is necessary for a full degree translation of the latest generation of non-Pt/C fuel cell electrocatalysts into high-performance electrodes in proton-exchange membrane fuel cells (PEMFCs). In this work, PtNi nanowire (NW) array gas diffusion electrodes (GDEs) are fabricated from Pt NW arrays with Ni impregnation. A 2.84-fold improvement in the oxygen reduction reaction catalytic activity is observed for the PtNi NW array GDE (cf. the Pt NW array GDE) using half-cell GDE measurement in a 0.1 M HClO4 aqueous electrolyte at 25 degrees C, in comparison to only a 1.07-fold power density recorded in the PEMFC single-cell test. An ionomer is shown to significantly increase the electrochemically active surface area of the GDEs, but the PtNi NW array GDE suffers from Ni ion contamination at a high temperature, contributing to decreased catalytic activities and limited improvement in operating PEMFCs.
机译:清楚地了解燃料电池操作中的催化活性增强机制是在质子交换膜燃料电池(PEMFCs)中的高性能电极中的全部学位翻译所必需的。 在这项工作中,PTNI纳米线(NW)阵列气体扩散电极(GDES)由具有Ni浸渍的Pt NW阵列制成。 与25℃的0.1M HClO4含水电解质中的半电池GDE测量,观察到氧还原反应催化活性的2.84倍的氧还原反应催化活性。 仅在PEMFC单细胞测试中记录的1.07倍的功率密度。 将离聚物显着增加GDE的电化学活性表面积,但是PTNI NW阵列GDE在高温下遭受Ni离子污染,有助于降低催化活性和操作PEMFC的有限改善。

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