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相对论效应与金纳米团簇独特的低对称结构。

Relativistic effects and the unique low-symmetry structures of gold nanoclusters.

作者信息

Huang Wei, Ji Min, Dong Chuan-Ding, Gu Xiao, Wang Lei-Ming, Gong Xin Gao, Wang Lai-Sheng

机构信息

Surface Physics Laboratory and Department of Physics, Fudan University, Shanghai 200433, China.

出版信息

ACS Nano. 2008 May;2(5):897-904. doi: 10.1021/nn800074b.

Abstract

The atomic structures of bare gold clusters provide the foundation to understand the enhanced catalytic properties of supported gold nanoparticles. However, the richness of diverse structures and the strong relativistic effects have posed considerable challenges for a systematic understanding of gold clusters with more than 20 atoms. We use photoelectron spectroscopy of size-selected anions, in combination with first principles calculations, to elucidate the structures of gold nanoclusters in a critical size regime from 55 to 64 atoms (1.1-1.3 nm in diameter). Au(55)(-) is found to be a nonicosahedral disordered cluster as a result of relativistic effects that induce strong surface contractions analogous to bulk surface reconstructions, whereas low-symmetry core-shell-type structures are found for Au(56)(-) to Au(64)(-). Au(58) exhibits a major electron-shell closing and is shown to possess a low-symmetry, but nearly spherical structure with a large energy gap. Clear spectroscopic and computational evidence has been observed, showing that Au(58)(-) is a highly robust cluster and additional atoms are simply added to its surface from Au(59)(-) to Au(64)(-) without inducing significant structural changes. The unique low-symmetry structures characteristic of gold nanoclusters due to the strong relativistic effects allow abundant surface defects sites, providing a key structure-function relationship to understand the catalytic capabilities of gold nanoparticles.

摘要

裸金团簇的原子结构为理解负载型金纳米颗粒增强的催化性能提供了基础。然而,多样结构的丰富性以及强烈的相对论效应给系统理解含有超过20个原子的金团簇带来了相当大的挑战。我们使用尺寸选择阴离子的光电子能谱,并结合第一性原理计算,来阐明直径在1.1 - 1.3纳米范围内、包含55至64个原子的关键尺寸区域内金纳米团簇的结构。由于相对论效应导致类似于体相表面重构的强烈表面收缩,发现Au(55)(-)是一个非二十面体无序团簇,而对于Au(56)(-)至Au(64)(-),发现了低对称性的核壳型结构。Au(58)表现出主要的电子壳层闭合,并且显示出具有低对称性但近乎球形的结构以及较大的能隙。已经观察到清晰的光谱和计算证据,表明Au(58)(-)是一个高度稳定的团簇,从Au(59)(-)到Au(64)(-),额外的原子只是简单地添加到其表面而不会引起显著的结构变化。由于强烈的相对论效应,金纳米团簇独特的低对称性结构允许存在大量的表面缺陷位点,这为理解金纳米颗粒的催化能力提供了关键的结构 - 功能关系。

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