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Nanoneedle-structured Anode Catalyst for Low-Temperature Proton Exchange Membrane Fuel Cells

机译:用于低温质子交换膜燃料电池的纳尼德结构阳极催化剂

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摘要

A new state-of-the-art NiMnCo anode co-catalyst has been prepared and investigated with the aim of reducing dependence on expensive Pt catalysts in hydrogen-based fuel cells. The as-prepared co-catalyst exhibited a three dimensional (3D) nanoneedle structure, which was observed using transmission electron microscopy. Pt nanoparticles (approximately 10 wt %) were deposited on the surface of the 3D NiMnCo nanoneedles to further increase their electrocatalytic activity, and the performance of membrane-electrode-assemblies based on the Pt@NiMnCo and NiMnCo anode catalysts was evaluated. The peak power densities of the Pt@NiMnCo- and NiMnCo- based fuel cells were found to be 352.64 and 299.78 mW/cm~2, respectively, at 80 °C. Furthermore, the Pt@NiMnCo nanoneedle catalyst exhibited a power density slightly lower than that of a commercial Pt/C (40wt% Pt) catalyst at 60 °C. Thus, the NiMnCo nanoneedle co-catalyst could reduce the dependence of proton exchange membrane fuel cells on Pt catalysts.
机译:已经制备了一种新的最先进的NimnCo阳极催化剂并研究了降低依赖于富氢基燃料电池中的昂贵的Pt催化剂的依赖性。制备的辅助催化剂表现出三维(3D)纳米孔结构,使用透射电子显微镜观察。 Pt纳米颗粒(约10wt%)沉积在3D Nimnco纳尼纳尼的表面上,以进一步增加其电催化活性,并评估基于Pt @ nimnco和Nimnco阳极催化剂的膜 - 电极组件的性能。 PT @ Nimnco-和基于Nimnco的燃料电池的峰值功率密度分别在80℃下分别为352.64和299.78mW / cm〜2。此外,PT @ Nimnco纳尼粉催化剂的功率密度略低于60℃的商用Pt / C(40wt%Pt)催化剂的功率密度。因此,Nimnco纳尼铝合金催化剂可以降低质子交换膜燃料电池对Pt催化剂的依赖性。

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