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通过氢诱导铂纳米颗粒聚结制备具有高密度平面缺陷的超薄铂纳米线。

H-Induced coalescence of Pt nanoparticles for the preparation of ultrathin Pt nanowires with high-density planar defects.

作者信息

Liu Yaming, Wang Chaoqi, Wang Weicong, Guo Ruiyun, Bi Wei, Guo Yanjun, Jin Mingshang

机构信息

Frontier Institute of Science and Technology and State Key Laboratory of Multiphase Flow in Power Engineering, Xi'an Jiaotong University, Xi'an, Shaanxi 710049, China.

出版信息

Nanoscale. 2019 Aug 8;11(31):14828-14835. doi: 10.1039/c9nr04349g.

Abstract

Construction of planar defects within a metallic catalyst can significantly improve its catalytic performance. However, it remains a huge challenge to introduce planar defects during the synthesis of metallic catalysts. In this work, we have reported an effective approach for the preparation of Pt nanowires with high-density planar defects. The success of the approach mainly relies on the attaching and merging of small Pt nanoparticles at low temperatures with the assistance of H2. By comparing the catalytic activities of Pt nanowires with high-density planar defects and commercial Pt/C catalysts toward methanol oxidation reactions, we show that the existence of planar defects can markedly enhance the electrocatalytic performance of the Pt nanowires. The Pt nanowires of 2.0 nm in diameter show a factor of 6.1 enhancement in specific activity and a factor of 5.4 enhancement in mass activity, respectively, for this reaction, compared to the commercial Pt/C catalyst. The method developed in this work could be an effective route to introduce planar defects within Pt catalysts, endowing them with much enhanced catalytic properties.

摘要

在金属催化剂中构建平面缺陷可显著提高其催化性能。然而,在金属催化剂合成过程中引入平面缺陷仍然是一个巨大的挑战。在这项工作中,我们报道了一种制备具有高密度平面缺陷的铂纳米线的有效方法。该方法的成功主要依赖于在氢气辅助下,小铂纳米颗粒在低温下的附着和合并。通过比较具有高密度平面缺陷的铂纳米线和商业铂碳催化剂对甲醇氧化反应的催化活性,我们发现平面缺陷的存在可显著提高铂纳米线的电催化性能。对于该反应,直径为2.0纳米的铂纳米线的比活性提高了6.1倍,质量活性提高了5.4倍,相比商业铂碳催化剂。这项工作中开发的方法可能是在铂催化剂中引入平面缺陷的有效途径,赋予它们大大增强的催化性能。

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