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菲咯咪唑衍生物中的机械变色和聚集诱导发光:不同供体位置变化在多发色团组装体中的作用

Mechanochromism and Aggregation-Induced Emission in Phenanthroimidazole Derivatives: Role of Positional Change of Different Donors in a Multichromophoric Assembly.

作者信息

Khan Faizal, Ekbote Anupama, Mobin Shaikh M, Misra Rajneesh

机构信息

Department of Chemistry, Indian Institute of Technology Indore, Indore 453552, India.

出版信息

J Org Chem. 2021 Jan 15;86(2):1560-1574. doi: 10.1021/acs.joc.0c02404. Epub 2021 Jan 5.

Abstract

Organic materials possessing solid-state emission responsive to external stimuli have significance in a variety of material, biomedical, and optoelectronic applications. Organic molecules having different donor-acceptor architectures integrated with aggregation-induced emission (AIE) fluorophores have been utilized in development of mechanofluorochromic (MFC) materials. In this work, we have designed and synthesized phenanthroimidazole (PI) based derivatives , , , , , and where in donors tetraphenylethylene-TPE (D) and phenothiazine-PTZ (D') of contrasting donor abilities are attached to the N and C atom positions of PI. The position and mode of attachment of the donors have been changed, and an additional PTZ spacer has been introduced which has a direct consequence on their photophysical and electronic properties. The PI derivatives manifest AIE, solvatochromic, and mechanochromic behavior. The single crystal X-ray analysis of and reveals bent structures for the PTZ unit and a twisted conformation for TPE moieties. The density functional theory calculations were used to obtain optimized ground-state structures of the PI derivatives. The work shows a comprehensive comparison of the photophysical, electronic, AIE, and MFC properties of the PI derivatives as an effect of variations in the position of donor, donor-acceptor strength, and change in molecular conformation on use of spacer.

摘要

对外部刺激具有固态发射响应的有机材料在各种材料、生物医学和光电子应用中具有重要意义。具有不同供体-受体结构并与聚集诱导发光(AIE)荧光团相结合的有机分子已被用于机械荧光变色(MFC)材料的开发。在这项工作中,我们设计并合成了基于菲并咪唑(PI)的衍生物、、、、、和,其中供体能力不同的四苯基乙烯-TPE(D)和吩噻嗪-PTZ(D')连接到PI的N和C原子位置。供体的连接位置和方式发生了变化,并引入了一个额外的PTZ间隔基,这对它们的光物理和电子性质产生了直接影响。PI衍生物表现出AIE、溶剂致变色和机械变色行为。对和的单晶X射线分析揭示了PTZ单元的弯曲结构和TPE部分的扭曲构象。密度泛函理论计算用于获得PI衍生物的优化基态结构。这项工作全面比较了PI衍生物的光物理、电子、AIE和MFC性质,这些性质是供体位置变化、供体-受体强度以及间隔基使用导致分子构象变化的结果。

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