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用超薄铂壳包覆铂镍八面体以提高耐久性,同时不影响其对氧还原的活性。

Coating Pt-Ni Octahedra with Ultrathin Pt Shells to Enhance the Durability without Compromising the Activity toward Oxygen Reduction.

作者信息

Park Jinho, Liu Jingyue, Peng Hsin-Chieh, Figueroa-Cosme Legna, Miao Shu, Choi Sang-Il, Bao Shixiong, Yang Xuan, Xia Younan

机构信息

School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, Georgia, 30332, USA.

Department of Physics, Arizona State University, Tempe, Arizona, 85287, USA.

出版信息

ChemSusChem. 2016 Aug 23;9(16):2209-15. doi: 10.1002/cssc.201600566. Epub 2016 Jul 27.

Abstract

We describe a new strategy to enhance the catalytic durability of Pt-Ni octahedral nanocrystals in the oxygen reduction reaction (ORR) by conformally depositing an ultrathin Pt shell on the surface. The Pt-Ni octahedra were synthesized according to a protocol reported previously and then employed directly as seeds for the conformal deposition of ultrathin Pt shells by introducing a Pt precursor dropwise at 200 °C. The amount of Pt precursor was adjusted relative to the number of Pt-Ni octahedra involved to obtain Pt-Ni@Pt1.5L octahedra of 12 nm in edge length for the systematic evaluation of their chemical stability and catalytic durability compared to Pt-Ni octahedra. Specifically, we compared the elemental compositions of the octahedra before and after treatment with acetic and sulfuric acids. We also examined their electrocatalytic stability toward the ORR through an accelerated durability test by using a rotating disk electrode method. Even after treatment with sulfuric acid for 24 h, the Pt-Ni@Pt1.5L octahedra maintained their original Ni content, whereas 11 % of the Ni was lost from the Pt-Ni octahedra. After 10 000 cycles of ORR, the mass activity of the Pt-Ni octahedra decreased by 75 %, whereas the Pt-Ni@Pt1.5L octahedra only showed a 25 % reduction.

摘要

我们描述了一种新策略,通过在表面共形沉积超薄铂壳层来提高铂 - 镍八面体纳米晶体在氧还原反应(ORR)中的催化耐久性。按照先前报道的方案合成铂 - 镍八面体,然后将其直接用作种子,通过在200℃下逐滴引入铂前驱体来共形沉积超薄铂壳层。相对于所涉及的铂 - 镍八面体的数量调整铂前驱体的量,以获得边长为12 nm的铂 - 镍@铂1.5L八面体,以便与铂 - 镍八面体相比,系统评估其化学稳定性和催化耐久性。具体而言,我们比较了用乙酸和硫酸处理前后八面体的元素组成。我们还通过使用旋转圆盘电极法的加速耐久性测试,研究了它们对ORR的电催化稳定性。即使在用硫酸处理24小时后,铂 - 镍@铂1.5L八面体仍保持其原始镍含量,而铂 - 镍八面体中11%的镍流失。经过10000次ORR循环后,铂 - 镍八面体的质量活性下降了75%,而铂 - 镍@铂1.5L八面体仅下降了25%。

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