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金纳米粒子在精细化学品合成中的氧化潜力。

Potential of gold nanoparticles for oxidation in fine chemical synthesis.

机构信息

Department of Chemistry and Applied Biosciences, Zurich, Switzerland.

出版信息

Annu Rev Chem Biomol Eng. 2012;3:11-28. doi: 10.1146/annurev-chembioeng-062011-081046.

Abstract

In recent years supported gold nanoparticles have emerged as efficient catalysts with considerable synthetic potential for liquid-phase oxidation reactions based on molecular oxygen as oxidant. Here we critically review the most attractive applications related to the selective oxidation of functional groups containing O, N, or Si heteroatoms. The reactions include the oxidation of alcohols, aldehydes, and organosilanes; the diverse transformations of amines; benzylic oxidations; and some one-pot multistep reactions starting with alcohol or amine oxidation. In complex liquid-phase transformations relying on bifunctional catalysis, appropriate choice of the support is frequently more important than the size of the gold particles. In some oxidation reactions gold nanoparticles outperform the traditional platinum-group metal catalysts, but the latest results indicate the superiority of bimetallic particles containing gold and platinum, palladium, or rhodium. The environmentally benign nature of the transformations is discussed.

摘要

近年来,负载型金纳米粒子作为高效催化剂在以分子氧为氧化剂的液相氧化反应中具有很大的合成潜力。本文批判性地综述了负载型金纳米粒子在含 O、N 或 Si 杂原子的官能团选择性氧化方面最有吸引力的应用。这些反应包括醇、醛和有机硅烷的氧化;胺的多种转化;苄基氧化;以及从醇或胺氧化开始的一些多步一锅反应。在依赖双功能催化的复杂液相转化中,载体的适当选择通常比金纳米粒子的尺寸更为重要。在一些氧化反应中,金纳米粒子的性能优于传统的铂族金属催化剂,但最新结果表明,含有金和铂、钯或铑的双金属粒子具有优越性。还讨论了转化的环境友好性。

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