Zhao Jun, Zhou Zhixuan, Li Guangfeng, Stang Peter J, Yan Xuzhou
School of Chemistry and Chemical Engineering, Frontiers Science Center for Transformative Molecules, Shanghai Jiao Tong University, Shanghai 200240, China.
Department of Chemistry, University of Utah, Salt Lake City, UT 84112, USA.
Natl Sci Rev. 2021 Mar 17;8(6):nwab045. doi: 10.1093/nsr/nwab045. eCollection 2021 Jun.
Coordination-driven self-assembly of metallacages has garnered significant interest because of their 3D layout and cavity-cored nature. The well-defined, highly tunable metallacage structures render them particularly attractive for investigating the properties of luminophores, as well as for inducing novel photophysical characters that enable widespread applications. In this review, we summarize the recent advances in synthetic methodologies for light-emitting metallacages, and highlight some representative applications of these metallacages. In particular, we focus on the favorable photophysical properties-including high luminescence efficiency in various physical states, good modularity in photophysical properties and stimulus responsiveness-that have resulted from incorporating ligands displaying aggregation-induced emission (AIE) into metallacages. These features show that the synergy between carrying out coordination-driven self-assembly and using luminophores with novel photophysical characteristics like AIE could stimulate the development of supramolecular luminophores for applications in fields as diverse as sensing, biomedicine and catalysis.
金属笼的配位驱动自组装因其三维布局和中空结构而备受关注。定义明确、高度可调的金属笼结构使其在研究发光体性质以及诱导新型光物理特性以实现广泛应用方面特别具有吸引力。在本综述中,我们总结了发光金属笼合成方法的最新进展,并重点介绍了这些金属笼的一些代表性应用。特别地,我们关注了通过将具有聚集诱导发光(AIE)特性的配体引入金属笼而产生的良好光物理性质,包括在各种物理状态下的高发光效率、光物理性质的良好模块化以及刺激响应性。这些特性表明,进行配位驱动自组装与使用具有AIE等新型光物理特性的发光体之间的协同作用,可以推动超分子发光体在传感、生物医学和催化等不同领域的应用发展。