首页> 外文期刊>Journal of power sources >Preparation Of Pt-ru Catalysts On Nafion(na~+)-bonded Carbon Layer Using Galvanostatic Pulse Electrodeposition For Proton-exchange Membrane Fuel Cell
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Preparation Of Pt-ru Catalysts On Nafion(na~+)-bonded Carbon Layer Using Galvanostatic Pulse Electrodeposition For Proton-exchange Membrane Fuel Cell

机译:质子交换膜燃料电池恒电流脉冲电沉积在Nafion(na〜+)键合的碳层上制备Pt-ru催化剂

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摘要

Platinum-ruthenium (Pt-Ru) on a Nafion(Na~+)-bonded carbon layer is fabricated by using galvanostatic pulse electrodeposition for high utilization of catalysts and cost reduction. The composition of the Pt-Ru electrode, which is controlled by varying the concentration of the Ru precursor, is determined by inductively coupled plasma-atomic emission spectroscopy and by electron probe microanalysis. The particle size of the electrodeposited Pt-Ru catalyst is determined by high-resolution transmission electron microscopy. Other characterizations are carried out by X-ray diffraction, X-ray photoelectron spectroscopy, and CO-stripping voltammetry. Electrodeposited Pt-Ru catalysts give improved performance, not only in single-cell operations but also with respect to CO tolerance compared with electrodes prepared by conventional means. The behaviour is probably due to enhanced utilization of the catalysts. Recovery from CO exposure demonstrates that the electrodeposited catalysts exhibit better resistance to CO.
机译:通过利用恒电流脉冲电沉积法在Nafion(Na〜+)键合的碳层上制备铂钌(Pt-Ru),以提高催化剂的利用率并降低成本。通过改变Ru前体的浓度来控制的Pt-Ru电极的组成,通过电感耦合等离子体原子发射光谱法和电子探针显微分析来确定。电沉积的Pt-Ru催化剂的粒度通过高分辨率透射电子显微镜确定。其他表征通过X射线衍射,X射线光电子能谱和CO溶出伏安法进行。与通过常规方法制备的电极相比,电沉积的Pt-Ru催化剂不仅在单电池操作中而且在CO耐受性方面均具有改进的性能。该行为可能是由于催化剂利用率的提高。从CO暴露中恢复表明,电沉积的催化剂表现出更好的抗CO性。

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