Lin Hongbin, Song Xiaorong, Chai Osburg Jin Huang, Yao Qiaofeng, Yang Huanghao, Xie Jianping
Joint School of National University of Singapore and Tianjin University, International Campus of Tianjin University, Binhai New City, Fuzhou, 350207, China.
Department of Chemical and Biomolecular Engineering, National University of Singapore, 4 Engineering Drive 4, Singapore, 117585, Singapore.
Adv Mater. 2024 Jun;36(25):e2401002. doi: 10.1002/adma.202401002. Epub 2024 Apr 2.
Metal nanoclusters (MNCs) can be synthesized with atomically precise structures and molecule formulae due to the rapid development of nanocluster science in recent decades. The ultrasmall size range (normally < 2 nm) endows MNCs with plenty of molecular-like properties, among which photoluminescent properties have aroused extensive attention. Tracing the research and development processes of luminescent nanoclusters, various photoluminescent analysis and characterization methods play a significant role in elucidating luminescent mechanism and analyzing luminescent properties. In this review, it is aimed to systematically summarize the normally used photoluminescent characterizations in MNCs including basic parameters and methods, such as excitation/emission wavelength, quantum yield, and lifetime. For each key parameter, first its definition and meaning is introduced and then the relevant characterization methods including measuring principles and the revelation of luminescent properties from the collected data are discussed. Then, it is discussed in details how to explore the luminescent mechanism of MNCs and construct NC-based applications based on the measured data. By means of these characterization strategies, the luminescent properties of MNCs and NC-based designs can be explained quantitatively and qualitatively. Hence, this review is expected to provide clear guidance for researchers to characterize luminescent MNCs and better understand the luminescent mechanism from the measured results.
由于近几十年来纳米团簇科学的迅速发展,金属纳米团簇(MNCs)能够以原子精确的结构和分子式合成。超小尺寸范围(通常<2nm)赋予MNCs许多类似分子的性质,其中光致发光性质引起了广泛关注。追溯发光纳米团簇的研发过程,各种光致发光分析和表征方法在阐明发光机制和分析发光性质方面发挥着重要作用。在这篇综述中,旨在系统总结MNCs中常用的光致发光表征,包括基本参数和方法,如激发/发射波长、量子产率和寿命。对于每个关键参数,首先介绍其定义和意义,然后讨论相关的表征方法,包括测量原理以及从收集的数据中揭示发光性质。然后,详细讨论如何根据测量数据探索MNCs的发光机制并构建基于纳米团簇的应用。通过这些表征策略,可以对MNCs的发光性质和基于纳米团簇的设计进行定量和定性解释。因此,本综述有望为研究人员表征发光MNCs并从测量结果中更好地理解发光机制提供清晰的指导。