Encapsulation engineering of porous crystalline frameworks for delayed luminescence and circularly polarized luminescence

IF 40.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Chemical Society Reviews Pub Date : 2024-05-15 DOI:10.1039/D3CS01026K
Xiaoyan Lu, Kun Zhang, Xinkai Niu, Dan-Dan Ren, Zhan Zhou, Li-Long Dang, Hong-Ru Fu, Chaoliang Tan, Lufang Ma and Shuang-Quan Zang
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Abstract

Delayed luminescence (DF), including phosphorescence and thermally activated delayed fluorescence (TADF), and circularly polarized luminescence (CPL) exhibit common and broad application prospects in optoelectronic displays, biological imaging, and encryption. Thus, the combination of delayed luminescence and circularly polarized luminescence is attracting increasing attention. The encapsulation of guest emitters in various host matrices to form host–guest systems has been demonstrated to be an appealing strategy to further enhance and/or modulate their delayed luminescence and circularly polarized luminescence. Compared with conventional liquid crystals, polymers, and supramolecular matrices, porous crystalline frameworks (PCFs) including metal–organic frameworks (MOFs), covalent-organic frameworks (COFs), zeolites and hydrogen-bonded organic frameworks (HOFs) can not only overcome shortcomings such as flexibility and disorder but also achieve the ordered encapsulation of guests and long-term stability of chiral structures, providing new promising host platforms for the development of DF and CPL. In this review, we provide a comprehensive and critical summary of the recent progress in host–guest photochemistry via the encapsulation engineering of guest emitters in PCFs, particularly focusing on delayed luminescence and circularly polarized luminescence. Initially, the general principle of phosphorescence, TADF and CPL, the combination of DF and CPL, and energy transfer processes between host and guests are introduced. Subsequently, we comprehensively discuss the critical factors affecting the encapsulation engineering of guest emitters in PCFs, such as pore structures, the confinement effect, charge and energy transfer between the host and guest, conformational dynamics, and aggregation model of guest emitters. Thereafter, we summarize the effective methods for the preparation of host–guest systems, especially single-crystal-to-single-crystal (SC–SC) transformation and epitaxial growth, which are distinct from conventional methods based on amorphous materials. Then, the recent advancements in host–guest systems based on PCFs for delayed luminescence and circularly polarized luminescence are highlighted. Finally, we present our personal insights into the challenges and future opportunities in this promising field.

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用于延迟发光和圆偏振发光的多孔晶体框架封装工程。
延迟发光(DF),包括磷光和热激活延迟荧光(TADF),以及圆偏振发光(CPL),在光电显示、生物成像和加密领域具有普遍而广阔的应用前景。因此,延迟发光和圆偏振发光的结合正引起越来越多的关注。将客体发光体封装在各种宿主基质中形成宿主-客体系统已被证明是一种极具吸引力的策略,可进一步增强和/或调节其延迟发光和圆偏振发光。与传统的液晶、聚合物和超分子基质相比,包括金属有机框架(MOF)、共价有机框架(COF)、沸石和氢键有机框架(HOF)在内的多孔晶体框架(PCF)不仅能克服柔性和无序性等缺点,还能实现客体的有序封装和手性结构的长期稳定,为 DF 和 CPL 的开发提供了新的前景广阔的宿主平台。在这篇综述中,我们对近年来通过客体发光体在 PCFs 中的封装工程而实现的宿主-客体光化学研究进展进行了全面而严谨的总结,尤其侧重于延迟发光和圆偏振发光。首先,我们介绍了磷光的一般原理、TADF 和 CPL、DF 和 CPL 的结合以及主客体之间的能量转移过程。随后,我们全面讨论了影响客体发射体在 PCF 中封装工程的关键因素,如孔隙结构、束缚效应、主客体之间的电荷和能量转移、构象动力学以及客体发射体的聚集模型。随后,我们总结了制备宿主-客体体系的有效方法,特别是单晶-单晶(SC-SC)转化和外延生长,这些方法有别于基于非晶材料的传统方法。然后,重点介绍了基于 PCF 的延迟发光和圆偏振发光的主-客系统的最新进展。最后,我们就这一前景广阔的领域所面临的挑战和未来机遇发表了个人见解。
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来源期刊
Chemical Society Reviews
Chemical Society Reviews 化学-化学综合
CiteScore
80.80
自引率
1.10%
发文量
345
审稿时长
6.0 months
期刊介绍: Chemical Society Reviews is published by: Royal Society of Chemistry. Focus: Review articles on topics of current interest in chemistry; Predecessors: Quarterly Reviews, Chemical Society (1947–1971); Current title: Since 1971; Impact factor: 60.615 (2021); Themed issues: Occasional themed issues on new and emerging areas of research in the chemical sciences
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