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量子尺寸金纳米团簇:连接金属有机化合物和纳米晶体之间的桥梁。

Quantum-sized gold nanoclusters: bridging the gap between organometallics and nanocrystals.

机构信息

Department of Chemistry, Carnegie Mellon University, Pittsburgh, PA 15213, USA.

出版信息

Chemistry. 2011 Jun 6;17(24):6584-93. doi: 10.1002/chem.201002390. Epub 2011 May 17.

Abstract

This Concept article provides an elementary discussion of a special class of large-sized gold compounds, so-called Au nanoclusters, which lies in between traditional organogold compounds (e.g., few-atom complexes, <1 nm) and face-centered cubic (fcc) crystalline Au nanoparticles (typically >2 nm). The discussion is focused on the relationship between them, including the evolution from the Au⋅⋅⋅Au aurophilic interaction in Au(I) complexes to the direct Au-Au bond in clusters, and the structural transformation from the fcc structure in nanocrystals to non-fcc structures in nanoclusters. Thiolate-protected Au(n)(SR)(m) nanoclusters are used as a paradigm system. Research on such nanoclusters has achieved considerable advances in recent years and is expected to flourish in the near future, which will bring about exciting progress in both fundamental scientific research and technological applications of nanoclusters of gold and other metals.

摘要

这篇述评文章对一类特殊的大型金化合物(即所谓的金纳米簇)进行了初步讨论,它介于传统的有机金化合物(如少数原子的配合物,<1nm)和面心立方(fcc)金纳米颗粒(通常>2nm)之间。讨论的重点是它们之间的关系,包括从 Au(⋅⋅⋅Au)金键合相互作用在 Au(I)配合物中的演变到在簇中的直接 Au-Au 键,以及从纳米晶体的 fcc 结构到纳米簇中非 fcc 结构的结构转变。硫醇保护的 Au(n)(SR)(m)纳米簇被用作范例系统。近年来,对这类纳米簇的研究取得了相当大的进展,并有望在不久的将来蓬勃发展,这将为金和其他金属的纳米簇的基础科学研究和技术应用带来令人兴奋的进展。

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