Effect of Capping Agent on the Shape and Catalytic Activity of PtPd Bimetallic Alloy Nanostructures

M. Johan Ooi, Nurshahzleen Mohd Yusaini, A. Mahmood, N. Napiah, Y. Yusof
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引用次数: 0

Abstract

In this work, PtPd nanostructures have been synthesized via the chemical reduction method with different capping agents (i.e., PVA, PVP, and PEG), whilst the strong reducing agent, NaBH4, was used in this study to reduce the metal salt to zero-valent PtPd nanostructures. Both PtPd synthesized with PVP and PEG exhibit nanoparticle structures, whereas PtPd synthesized in PVA demonstrates large, interconnected network structures. Pt-Pd synthesized with PVP exhibits a high ECSA value of 692.68 m2/g compared to without capping agent (287.80 m2/g) indicating large active sites, which increases its catalytic function. This study concludes that the presence of a capping agent influences the morphological structure and the catalyst's efficiency in performing a redox reaction at the surface.
封盖剂对PtPd双金属合金纳米结构形状和催化活性的影响
本研究采用化学还原法制备了PtPd纳米结构,采用不同的封盖剂(PVA、PVP和PEG),并采用强还原剂NaBH4将金属盐还原为零价PtPd纳米结构。PVP和PEG合成的PtPd都表现出纳米颗粒结构,而PVA合成的PtPd则表现出大的、相互连接的网络结构。PVP合成的Pt-Pd的ECSA值为692.68 m2/g,高于未加封盖剂(287.80 m2/g),表明其活性位点较大,增强了其催化功能。本研究得出结论,封盖剂的存在会影响催化剂的形态结构和在表面进行氧化还原反应的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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