绿色荧光蛋白发色团类似物的共晶:AIE和ACQ之间的共晶诱导开关

IF 3.4 2区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Sneha Suresh, Niteen B. Dabke, Rinu Pandya, Kumar Vanka, Madhusudan Dutta and Rajesh G. Gonnade*, 
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引用次数: 0

摘要

荧光有机固体在推进光子学应用方面具有巨大的潜力。然而,调整它们的固态光致发光发射仍然是一个重大挑战。在本研究中,我们报道了由原始咪唑啉酮衍生物(a)和各种共构象分子(1,2,4,5-四氟-3,6-二碘苯,1,2,4,5-四氟-3,6-二溴苯,全氟萘和3,4,5-三氟苯甲酸)衍生的五种共晶(两种共晶多晶)的合成和表征。采用单晶x射线衍射、吸收光谱、光致发光光谱、光致发光衰减光谱等方法研究了这些共晶的结构和光学性质。共晶I、II和III是同构对,具有三维等构性,其中共晶分子桥接化合物A的相邻螺旋,导致聚集诱导发射。而利用3,4,5-三氟苯甲酸形成的共晶多晶IVA和IVB在共晶与分子A之间的π-堆叠相互作用下形成二维片状结构,其面间距离为3.2 ~ 3.5 Å。这些更强的π -π相互作用促进非辐射衰变途径,导致荧光减少或猝灭和聚集引起的猝灭效应。为了进一步了解它们的电子特性,进行了包括前沿分子轨道、时变密度泛函理论、Hirshfeld表面分析、分子静电势和非共价相互作用图在内的理论分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Cocrystals of the Green Fluorescence Protein Chromophore Analogue: Coformer-Induced Switch between AIE and ACQ

Cocrystals of the Green Fluorescence Protein Chromophore Analogue: Coformer-Induced Switch between AIE and ACQ

Fluorescent organic solids hold great potential for advancing photonics applications. However, tuning their solid-state photoluminescent emissions remains a significant challenge. In this study, we report the synthesis and characterization of five cocrystals (two cocrystal polymorphs) derived from a pristine imidazolinone derivative (A) and the various coformer molecules, namely 1,2,4,5-tetrafluoro-3,6-diiodobenzene, 1,2,4,5-tetrafluoro-3,6-dibromobenzene, perfluoronaphthalene, and 3,4,5-trifluorobenzoic acid. The structural and optical properties of these cocrystals were examined by using single-crystal X-ray diffraction, absorption spectroscopy, photoluminescence spectroscopy, and photoluminescence decay spectroscopy. Cocrystals I, II, and III are isomorphous pairs and exhibit three-dimensional isostructurality, where the coformer molecules bridge adjacent helices of compound A, leading to aggregation-induced emission. In contrast, the cocrystal polymorphs IVA and IVB developed using coformer 3,4,5-trifluorobenzoic acid form two-dimensional sheet-like structures mediated by π-stacking interactions between the coformers and molecule A, with interplanar distances ranging from 3.2 to 3.5 Å. These stronger π–π interactions promote nonradiative decay pathways, resulting in reduced or quenched fluorescence and an aggregation-caused quenching effect. To gain further insights into their electronic properties, theoretical analysis including frontier molecular orbitals, time-dependent density functional theory, Hirshfeld surface analysis, molecular electrostatic potential, and noncovalent interaction plots were performed.

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来源期刊
Crystal Growth & Design
Crystal Growth & Design 化学-材料科学:综合
CiteScore
6.30
自引率
10.50%
发文量
650
审稿时长
1.9 months
期刊介绍: The aim of Crystal Growth & Design is to stimulate crossfertilization of knowledge among scientists and engineers working in the fields of crystal growth, crystal engineering, and the industrial application of crystalline materials. Crystal Growth & Design publishes theoretical and experimental studies of the physical, chemical, and biological phenomena and processes related to the design, growth, and application of crystalline materials. Synergistic approaches originating from different disciplines and technologies and integrating the fields of crystal growth, crystal engineering, intermolecular interactions, and industrial application are encouraged.
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