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Tailoring the Edge Sites of 2D Pd Nanostructures with Different Fractal Dimensions for Enhanced Electrocatalytic Performance

机译:定制具有不同分形维数的二维Pd纳米结构的边缘位点以增强电催化性能

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摘要

The important role of edge sites in atomically thin 2D materials serving as catalysts is already of concerned in plenty of material systems and catalytic reactions, whereas comprehensive study of the edge sites in 2D noble‐metal nanocatalysts is still lacking. Herein, for the first time, a controllable etching approach to tailor the fractal dimensions and edge sites of Pd nanosheets is developed and the edge sites in these 2D nanostructures from both structural and chemical aspects are investigated. The as‐tailored 2D Pd nanostructures with extra edge sites exhibit substantially enhanced electrocatalytic performance for the formic acid oxidation reaction (FAOR). Moreover, careful analysis of the results from electrocatalytic measurements reveals that the specific activities for the edge sites in the 2D nanostructures far exceed the activities for the low‐index planes of Pd and even dominate the overall activity exhibited by the 2D noble‐metal catalysts.
机译:在许多材料系统和催化反应中,原子薄的2D材料中用作催化剂的边缘位点的重要作用已经受到关注,而2D贵金属纳米催化剂中的边缘位点仍缺乏全面的研究。本文中,首次开发了可控制的刻蚀方法,以定制Pd纳米片的分形尺寸和边缘位置,并从结构和化学方面研究了这些2D纳米结构中的边缘位置。量身定制的具有额外边缘位点的2D Pd纳米结构对甲酸氧化反应(FAOR)表现出显着增强的电催化性能。此外,对电催化测量结果的仔细分析表明,二维纳米结构中边缘位点的比活度远远超过了钯低折射率平面的活度,甚至支配了二维贵金属催化剂展现出的整体活度。

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