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用于化学合成的纳米晶金和金钯合金催化剂。

Nanocrystalline gold and gold palladium alloy catalysts for chemical synthesis.

作者信息

Hutchings Graham J

机构信息

School of Chemistry, Cardiff University, Cardiff, UK.

出版信息

Chem Commun (Camb). 2008 Mar 14(10):1148-64. doi: 10.1039/b712305c. Epub 2007 Nov 21.

Abstract

Catalysis by gold has become one of the most studied new topics in chemistry in recent years, and yet for many gold acting as a catalyst is, perhaps, a most unlikely possibility since bulk gold is a relatively non-reactive, immutable, ductile metal that is prized for its great beauty and value rather than for the depth of its chemistry. However, when prepared in nanocrystalline form, as a collection of a few hundreds of atoms, it displays remarkable activity as a heterogeneous catalyst for a broad range of redox reactions. Of particular note is the ability of gold, either alone or alloyed with palladium, to catalyse selective oxidation reactions, e.g. alkene epoxidation, alcohol oxidation, and the direct synthesis of hydrogen peroxide by the hydrogenation of molecular oxygen. In this article the recent advances in this exciting new field are explored.

摘要

近年来,金催化已成为化学领域中研究最多的新课题之一。然而,对许多人来说,金作为催化剂或许是最不可能的事情,因为块状金是一种相对不活泼、不易变、有延展性的金属,它因其极高的美观性和价值而备受珍视,而非因其化学深度。然而,当制备成纳米晶形式,即由几百个原子组成的集合体时,它作为一种多相催化剂,对广泛的氧化还原反应表现出显著的活性。特别值得注意的是,金单独或与钯合金化时,能够催化选择性氧化反应,例如烯烃环氧化、醇氧化以及通过分子氧氢化直接合成过氧化氢。本文将探讨这一令人兴奋的新领域的最新进展。

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