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高指数晶面钯纳米壳的异质外延生长及其催化性能。

Heteroepitaxial growth of high-index-faceted palladium nanoshells and their catalytic performance.

机构信息

Department of Physics, The Chinese University of Hong Kong, Shatin, Hong Kong SAR, China.

出版信息

J Am Chem Soc. 2011 Feb 2;133(4):1106-11. doi: 10.1021/ja1095733. Epub 2010 Dec 21.

Abstract

The development of high-performance nanocatalysts relies essentially on the generation of stable and active surface sites at the atomic scale through synthetic control of the size, shape, and chemical composition of nanoscale metals and metal oxides. One promising route is to induce the exposure of catalytically active high-index facets of nanostructures through shape-controlled syntheses. We have designed and prepared two types of Pd nanoshells that are enclosed by high-index {730} and {221} facets through heteroepitaxial growth on high-index-faceted Au nanocrystals. The turnover numbers per surface atom of the high-index-faceted Pd nanoshells have been found to be 3-7 times those of Pd and Au-Pd core-shell nanocubes that possess only {100} facets in catalyzing the Suzuki coupling reaction. These results open up a potential for the development of inexpensive and highly active metal nanocatalysts.

摘要

高性能纳米催化剂的发展主要依赖于通过纳米尺度金属和金属氧化物的尺寸、形状和化学成分的合成控制,在原子尺度上产生稳定和活性的表面位。一种很有前途的方法是通过控制合成来诱导纳米结构暴露具有催化活性的高指数晶面。我们设计并制备了两种钯纳米壳,它们是通过在高指数晶面的金纳米晶体上进行异质外延生长而被包含在高指数{730}和{221}晶面内的。在铃木偶联反应中,高指数晶面钯纳米壳的每个表面原子的周转数比仅具有{100}晶面的钯和金钯核壳纳米立方体高 3-7 倍。这些结果为开发廉价且高活性的金属纳米催化剂开辟了新的可能性。

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