Jin Yan, Zhang Chong, Dong Xi-Yan, Zang Shuang-Quan, Mak Thomas C W
Green Catalysis Center and College of Chemistry, Zhengzhou University, Zhengzhou 450001, China.
Chem Soc Rev. 2021 Mar 1;50(4):2297-2319. doi: 10.1039/d0cs01393e.
Continuing research on the preparation and structural determination of monolayer-protected silver clusters has been performed. The compounds include mixed-valence Ag0/1+ clusters and single-valence Ag1+ clusters, which contain a few to tens or hundreds of Ag atoms that are protected by organic ligands. Sometimes, counter ions and extraneous species appear in their crystalline state. These non-metal parts define the shell layers of silver clusters. Strong coordination bonds and weak supramolecular interactions have been employed not only to modify the shell configurations and components of discrete silver clusters but also to hierarchically assemble silver clusters, producing novel cluster-based functional materials with unexpected physical and chemical properties. Atomically-precise structures help to map out definite electronic structures and structure-property correlations, enabling precise control of shell layers to achieve desired stability and specific functionalities. In this Tutorial Review, based on classic silver cluster paradigms, we first summarize the strategies and recent advances in precise modification and hierarchical assembly of well-defined silver clusters through shell engineering. Second, the correlations of structure-property and structure-functionality are summarized. Of these, the most important is structure-luminescence relationship, which is discussed in detail. In this topic, the uniqueness and prospect of silver clusters as potential lighting materials are scrutinized. Finally, the existing challenges and perspectives of functional silver clusters are presented. The general strategic design presented in this Review will motivate researchers to exploit the development of functionality-oriented materials based on nanosized building blocks in the enrichment of nanotechnology and material science.
关于单层保护银簇的制备和结构测定的持续研究一直在进行。这些化合物包括混合价态的Ag⁰/¹⁺簇和单价的Ag¹⁺簇,它们包含由有机配体保护的几个到几十或几百个银原子。有时,抗衡离子和外来物种会以结晶态出现。这些非金属部分定义了银簇的壳层。强配位键和弱超分子相互作用不仅被用于修饰离散银簇的壳层构型和组成,还被用于分级组装银簇,从而产生具有意想不到的物理和化学性质的新型基于簇的功能材料。原子精确的结构有助于描绘出明确的电子结构以及结构-性质相关性,从而能够精确控制壳层以实现所需的稳定性和特定功能。在本教程综述中,基于经典的银簇范例,我们首先总结了通过壳层工程对明确的银簇进行精确修饰和分级组装的策略及最新进展。其次,总结了结构-性质和结构-功能的相关性。其中,最重要的是结构-发光关系,并对此进行了详细讨论。在这个主题中,审视了银簇作为潜在发光材料的独特性和前景。最后,介绍了功能银簇现有的挑战和前景。本综述中提出的总体战略设计将激励研究人员在纳米技术和材料科学的发展中,开发基于纳米级构建块的面向功能的材料。