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金属纳米团簇的原子精确工程。

Atomic-precision engineering of metal nanoclusters.

作者信息

Du Xiangsha, Jin Rongchao

机构信息

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

出版信息

Dalton Trans. 2020 Aug 11;49(31):10701-10707. doi: 10.1039/d0dt01853h.

DOI:10.1039/d0dt01853h
PMID:32648867
Abstract

Ultrasmall metal nanoparticles (below 2.2 nm core diameter) start to show discrete electronic energy levels due to strong quantum confinement effects and thus behave much like molecules. The size and structure dependent quantization induces a plethora of new phenomena, including multi-band optical absorption, enhanced luminescence, single-electron magnetism, and catalytic reactivity. The exploration of such new properties is largely built on the success in unveiling the crystallographic structures of atomically precise nanoclusters (typically protected by ligands, formulated as MnLmq, where M = metal, L = Ligand, and q = charge). Correlation between the atomic structures of nanoclusters and their properties has further enabled atomic-precision engineering toward materials design. In this frontier article, we illustrate several aspects of the precise engineering of gold nanoclusters, such as the single-atom size augmenting, single-atom dislodging and doping, precise surface modification, and single-electron control for magnetism. Such precise engineering involves the nanocluster's geometric structure, surface chemistry, and electronic properties, and future endeavors will lead to new materials design rules for structure-function correlations and largely boost the applications of metal nanoclusters in optics, catalysis, magnetism, and other fields. Following the illustrations of atomic-precision engineering, we have also put forth some perspectives. We hope this frontier article will stimulate research interest in atomic-level engineering of nanoclusters.

摘要

超小金属纳米颗粒(核心直径小于2.2纳米)由于强烈的量子限制效应开始呈现离散的电子能级,因此其行为与分子非常相似。尺寸和结构依赖的量子化引发了大量新现象,包括多波段光吸收、增强发光、单电子磁性和催化反应性。对这些新特性的探索很大程度上建立在揭示原子精确纳米团簇(通常由配体保护,化学式为MnLmq,其中M = 金属,L = 配体,q = 电荷)晶体结构的成功之上。纳米团簇的原子结构与其性质之间的相关性进一步实现了面向材料设计的原子精确工程。在这篇前沿文章中,我们阐述了金纳米团簇精确工程的几个方面,例如单原子尺寸增大、单原子置换与掺杂、精确表面修饰以及磁性的单电子控制。这种精确工程涉及纳米团簇的几何结构、表面化学和电子性质,未来的努力将产生结构 - 功能相关性的新材料设计规则,并极大地推动金属纳米团簇在光学、催化、磁性及其他领域的应用。在阐述原子精确工程之后,我们也提出了一些观点。我们希望这篇前沿文章能激发对纳米团簇原子级工程的研究兴趣。

相似文献

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Atomic-precision engineering of metal nanoclusters.金属纳米团簇的原子精确工程。
Dalton Trans. 2020 Aug 11;49(31):10701-10707. doi: 10.1039/d0dt01853h.
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