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基于极性氰基/异氰基衍生发光体的刺激响应发光:结构剪裁与自组装

Stimuli-responsive luminescence from polar cyano/isocyano-derived luminophores structural tailoring and self-assembly.

作者信息

Yang Bo, Yan Suqiong, Zhang Yuan, Feng Fanda, Huang Wei

机构信息

State Key Laboratory of Coordination Chemistry, Nanjing National Laboratory of Microstructures, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing, Jiangsu Province 210093, P. R. China.

Shenzhen Research Institute of Nanjing University, Shenzhen 518005, P. R. China.

出版信息

Dalton Trans. 2024 Mar 19;53(12):5320-5341. doi: 10.1039/d3dt04049f.

Abstract

Polar cyano fragments and their isomeric isocyano counterparts have attracted great attention as stimuli-responsive luminescent materials in a wide range of fields including organic light-emitting diode devices, chemical fluorescent sensors, photoelectric semiconductors, anti-counterfeit products, ., mainly because of their typical electron-deficient activity, noncovalent recognition ability, and variable coordination capacity. The electron-deficient and polar nature of these blocks have significant effects on the properties of the cyano/isocyano-based luminophore materials, especially concerning their condensed state-dependent electronic structures. Among them, donor-acceptor (D-A) derived unimolecular and co-assembled luminophores have attracted more attention because their large delocalized structures and noncovalent interaction recognition sites can rebuild the electronic transfer character in the aggregative state, thus endowing them with outstanding stimuli-responsive luminescent behavior intermolecular and intramolecular charge transfer in polytropic morphologies. In this perspective paper, we give a brief introduction on stimuli-responsive organic and coordinated luminophores and the documented typical design concepts and applications in recent years. It is expected that this perspective article will not only summarize the recent developments of polar cyano/isocyano-derived luminophores and their coordination compounds structural tailoring and self-assembly but also throw light on the future of the design of more sophisticated stimuli-responsive architectures and their versatile properties.

摘要

极性氰基片段及其异构体异氰基类似物作为刺激响应发光材料,在包括有机发光二极管器件、化学荧光传感器、光电半导体、防伪产品等广泛领域中引起了极大关注,主要是因为它们具有典型的缺电子活性、非共价识别能力和可变的配位能力。这些基团的缺电子和极性性质对基于氰基/异氰基的发光体材料的性能有显著影响,特别是关于它们与凝聚态相关的电子结构。其中,供体-受体(D-A)衍生的单分子和共组装发光体受到了更多关注,因为它们的大离域结构和非共价相互作用识别位点可以在聚集态下重建电子转移特性,从而赋予它们在多形态中的分子间和分子内电荷转移方面出色的刺激响应发光行为。在这篇展望文章中,我们简要介绍了刺激响应有机和配位发光体以及近年来记录的典型设计概念和应用。预计这篇展望文章不仅将总结极性氰基/异氰基衍生发光体及其配位化合物在结构剪裁和自组装方面的最新进展,还将为更复杂的刺激响应结构设计及其多功能性质的未来发展提供启示。

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