Alkynyl ligand for preparing atomically precise metal nanoclusters: Structure enrichment, property regulation, and functionality enhancement

IF 5.9 4区 化学 Q1 CHEMISTRY, INORGANIC & NUCLEAR Chinese Journal of Structural Chemistry Pub Date : 2024-07-26 DOI:10.1016/j.cjsc.2024.100405
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Abstract

Ligand plays a critical role in determining the physicochemical properties and functionalities of metal nanoclusters, as the ligand molecules interact with a significant amount of metal atoms in the core through various binding moieties. Compared with the most commonly employed thiolate molecule, alkynyl ligand represents a new avenue to prepare coinage metal nanoclusters due to its capability of binding to the metal atoms with either σ bonding or π bonding or both. In this review, we first describe the definition of atomically precise metal nanoclusters and the significance of ligand in metal nanoclusters. Then, the impact and unique advantages of employing alkynyl ligand for fabricating coinage metal nanoclusters are discussed, with focus on the enrichment of interfacial binding structure, the regulation of physicochemical properties, and the improvement of functionalities. Some explicit examples are provided, aiming to elucidate the structure-property-functionality relationship at the atomic level. Finally, a conclusion and introspective outlook regarding designing alkynyl ligand for future regulation of the structure/property/functionality of metal nanoclusters is presented.

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用于制备原子精确金属纳米团簇的炔基配体:结构富集、性质调节和功能增强
配体在决定金属纳米团簇的理化性质和功能方面起着至关重要的作用,因为配体分子通过各种结合分子与核心中的大量金属原子相互作用。与最常用的硫醇酯分子相比,炔基配体能够以 σ 键或 π 键或两者结合的方式与金属原子结合,为制备共价金属纳米团簇提供了一条新途径。在这篇综述中,我们首先介绍了原子精确金属纳米团簇的定义以及配体在金属纳米团簇中的意义。然后,讨论了使用炔基配体制造硬币状金属纳米团簇的影响和独特优势,重点是丰富界面结合结构、调节理化性质和改善功能性。还提供了一些明确的例子,旨在阐明原子层面的结构-性能-功能关系。最后,对设计炔基配体用于未来调节金属纳米团簇的结构/性能/功能进行了总结和展望。
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来源期刊
CiteScore
4.70
自引率
22.70%
发文量
5334
审稿时长
13 days
期刊介绍: Chinese Journal of Structural Chemistry “JIEGOU HUAXUE ”, an academic journal consisting of reviews, articles, communications and notes, provides a forum for the reporting and discussion of current novel research achievements in the fields of structural chemistry, crystallography, spectroscopy, quantum chemistry, pharmaceutical chemistry, biochemistry, material science, etc. Structural Chemistry has been indexed by SCI, CA, and some other prestigious publications.
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