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用于圆偏振发光的基于荧光染料的手性结晶有机盐网络

Fluorescent Dye-Based Chiral Crystalline Organic Salt Networks for Circularly Polarized Luminescence.

作者信息

Li Haitao, Zhang Shuyu, Zhu Qi-Long, Sheng Tian-Lu, Wu Xin-Tao, Wen Yuehong

机构信息

State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou, 350002, P. R. China.

University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.

出版信息

Small. 2025 Jan;21(1):e2408874. doi: 10.1002/smll.202408874. Epub 2024 Oct 24.

Abstract

A facile and general strategy is developed herein for the construction of circularly polarized luminescence (CPL) materials with simultaneously high fluorescence quantum efficiency (Φ) and large luminescence dissymmetry factor (g). The self-assembly of fluorescent dye, disodium 4,4'-bis(2-sulfonatostyryl)biphenyl (CBS), with chiral diamines such as (R,R)/(S,S)-1,2-diaminocyclohexane (R/S-DACH) and R/S-1,2-diaminopropane (R/S-DAP), produces four chiral crystalline organic salt networks (COSNs). These as-synthesized organic salts emit strong blue-color CPL upon excitation, with both high Φ and g values of up to 79% and 0.022. The well-defined molecular structures and arrangements of CBS are directly observed through single crystal X-ray analysis, offering crucial information regarding the origins of high-efficiency CPL performance. The chirality of amine is effectively transferred to CBS and further amplified to the supramolecular structure by multiple hydrogen bonding and π-π stacking interactions, giving rise to the large g factors; meanwhile, the fixation and the ordered arrangement of CBS by these multiple interactions empower efficient suppression of molecular motions, facilitating strong fluorescence. This work can inspire the assembly of CPL organic materials with high Φ and g via charge-assisted hydrogen bonds between fluorescent dyes and chiral inducers. It also offers important insight into the structural origins of supramolecular chirality and CPL performance.

摘要

本文开发了一种简便通用的策略,用于构建同时具有高荧光量子效率(Φ)和大发光不对称因子(g)的圆偏振发光(CPL)材料。荧光染料4,4'-双(2-磺酸钠苯乙烯基)联苯二钠(CBS)与手性二胺如(R,R)/(S,S)-1,2-二氨基环己烷(R/S-DACH)和R/S-1,2-二氨基丙烷(R/S-DAP)自组装,生成四种手性结晶有机盐网络(COSNs)。这些合成的有机盐在激发时发出强烈的蓝色CPL,Φ和g值都很高,分别高达79%和0.022。通过单晶X射线分析直接观察到CBS明确的分子结构和排列,提供了有关高效CPL性能起源的关键信息。胺的手性有效地转移到CBS,并通过多重氢键和π-π堆积相互作用进一步放大到超分子结构,产生大的g因子;同时,这些多重相互作用对CBS的固定和有序排列有效地抑制了分子运动,促进了强荧光。这项工作可以激发通过荧光染料和手性诱导剂之间的电荷辅助氢键组装具有高Φ和g的CPL有机材料。它还为超分子手性和CPL性能的结构起源提供了重要见解。

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