Sang Yutao, Han Jianlei, Zhao Tonghan, Duan Pengfei, Liu Minghua
Beijing National Laboratory for Molecular Science, CAS Key Laboratory of Colloid Interface and Chemical Thermodynamics, Institute of Chemistry, Chinese Academy of Sciences, No. 2 ZhongGuanCun BeiYiJie, Beijing, 100190, P. R. China.
University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.
Adv Mater. 2020 Oct;32(41):e1900110. doi: 10.1002/adma.201900110. Epub 2019 Aug 8.
Currently, the development of circularly polarized luminescent (CPL) materials has drawn extensive attention due to the numerous potential applications in optical data storage, displays, backlights in 3D displays, and so on. While the fabrication of CPL-active materials generally requires chiral luminescent molecules, the introduction of the "self-assembly" concept offers a new perspective in obtaining the CPL-active materials. Following this approach, various self-assembled materials, including organic-, inorganic-, and hybrid systems can be endowed with CPL properties. Benefiting from the advantages of self-assembly, not only chiral molecules, but also achiral species, as well as inorganic nanoparticles have potential to be self-assembled into chiral nanoassemblies showing CPL activity. In addition, the dissymmetry factor, an important parameter of CPL materials, can be enhanced through various pathways of self-assembly. Here, the present status and progress of self-assembled nanomaterials with CPL activity are reviewed. An overview of the key factors in regulating chiral emission materials at the supramolecular level will largely boost their application in multidisciplinary fields.
目前,圆偏振发光(CPL)材料的发展因其在光学数据存储、显示器、3D显示器背光源等众多潜在应用而受到广泛关注。虽然制备具有CPL活性的材料通常需要手性发光分子,但“自组装”概念的引入为获得具有CPL活性的材料提供了新的视角。按照这种方法,各种自组装材料,包括有机、无机和混合体系,都可以被赋予CPL特性。受益于自组装的优势,不仅手性分子,而且非手性物种以及无机纳米颗粒都有潜力自组装成具有CPL活性的手性纳米聚集体。此外,不对称因子作为CPL材料的一个重要参数,可以通过各种自组装途径得到增强。在此,综述了具有CPL活性的自组装纳米材料的现状和进展。在超分子水平上对调节手性发光材料的关键因素进行概述将极大地推动其在多学科领域的应用。