Chen Mingshu, Goodman D Wayne
Department of Chemistry, Texas A&M University, College Station, TX 77842-3012, USA.
Chem Soc Rev. 2008 Sep;37(9):1860-70. doi: 10.1039/b707318f. Epub 2008 Jul 10.
Almost two decades have passed since supported Au nanoparticles were found to be active for CO oxidation. This discovery inspired extensive research addressing the origin of the unique properties of supported Au nanoparticles, the design and synthesis of potentially technical Au catalysts, and the extension of Au catalysis to other reactions. This tutorial review summarises the current understanding of the origin of the unique properties of titania-supported Au catalysts for carbon monoxide oxidation. The key issues of catalysis by nanostructured Au, effects of oxide support and active site/structure, especially those provided from model studies are discussed in detail. The successful synthesis of a highly catalytically active gold bilayer may lead to the design and synthesis of practically active Au nanofilm catalysts.
自从负载型金纳米颗粒被发现对一氧化碳氧化具有活性以来,已经过去了近二十年。这一发现激发了广泛的研究,涉及负载型金纳米颗粒独特性质的起源、潜在工业金催化剂的设计与合成,以及金催化在其他反应中的拓展。本教程综述总结了目前对二氧化钛负载的金催化剂用于一氧化碳氧化的独特性质起源的理解。详细讨论了纳米结构金催化的关键问题、氧化物载体的影响以及活性位点/结构,特别是那些来自模型研究的内容。高催化活性金双层的成功合成可能会导致实际活性金纳米薄膜催化剂的设计与合成。