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多组分原子精确金属纳米团簇的新途径。

New Routes for Multicomponent Atomically Precise Metal Nanoclusters.

作者信息

Khatun Esma, Pradeep Thalappil

机构信息

Department of Chemistry, DST Unit of Nanoscience (DST UNS) and Thematic Unit of Excellence (TUE), Indian Institute of Technology Madras, Chennai 600036, India.

出版信息

ACS Omega. 2020 Dec 18;6(1):1-16. doi: 10.1021/acsomega.0c04832. eCollection 2021 Jan 12.

Abstract

Atomically precise metal nanoclusters (NCs), protected by a monolayer of ligands, are regarded as potential building blocks for advanced technologies. They are considered as intermediates between the atomic/molecular regime and the bulk. Incorporation of foreign metals in NCs enhances several of their properties such as catalytic activity, luminescence, and so on; hence, it is of high importance for tuning their properties and broadening the scope of applications. In most of the cases, enhancement in specific properties was observed upon alloying due to the synergistic effect. In the past several years, many alloy clusters have been synthesized, which show a tremendous change in the properties than their monometallic analogs. However, controlling the synthesis and tuning the structures of alloy NCs with atomic precision are major challenges. Various synthetic methodologies have been developed so far for the controlled synthesis of alloy NCs. In this perspective, we have highlighted those diverse synthetic routes to prepare alloys, which include co-reduction, galvanic reduction, antigalvanic reduction, metal deposition, ligand exchange, intercluster reaction, and reaction of NCs with bulk metals. Advancement in synthetic procedures will help in the preparation of alloy NCs with the desired structure and composition. Future perceptions concerning the progress of alloy nanocluster science are also provided.

摘要

由单层配体保护的原子精确金属纳米团簇(NCs)被视为先进技术的潜在构建块。它们被认为是原子/分子体系与块体之间的中间体。在NCs中掺入外来金属可增强其多种性质,如催化活性、发光等;因此,这对于调节其性质和拓宽应用范围非常重要。在大多数情况下,由于协同效应,合金化后会观察到特定性质的增强。在过去几年中,已经合成了许多合金团簇,它们的性质与其单金属类似物相比有巨大变化。然而,以原子精度控制合金NCs的合成和调节其结构是主要挑战。到目前为止,已经开发了各种合成方法来控制合金NCs的合成。从这个角度来看,我们重点介绍了那些制备合金的不同合成路线,包括共还原、电化还原、反电化还原、金属沉积、配体交换、团簇间反应以及NCs与块状金属的反应。合成程序的进步将有助于制备具有所需结构和组成的合金NCs。还提供了关于合金纳米团簇科学进展的未来展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fb9/7807469/ecaef77f441e/ao0c04832_0007.jpg

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