Keeping the chromophores crossed: evidence for null exciton splitting

IF 39 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
M. P. Lijina, Alfy Benny, Ebin Sebastian and Mahesh Hariharan
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引用次数: 0

Abstract

Fundamental understanding of the supramolecular assemblies of organic chromophores and the development of design strategies have seen endless ripples of interest owing to their exciting photophysical properties and optoelectronic applications. The independent discovery of dye aggregates by Jelley and Scheibe was the commencement of the remarkable advancement in the field of aggregate photophysics. Subsequent research warranted an exceptional model for defining the exciton interactions in aggregates, proposed by Davydov, Kasha and co-workers, independently, based on the long-range Coulombic coupling. Fascinatingly, the orthogonally cross-stacked molecular transition dipole arrangement was foretold by Kasha to possess null exciton interaction leading to spectroscopically uncoupled molecular assembly, which lacked an experimental signature for decades. There have been several attempts to identify and probe atypical molecular aggregates for decoding their optical behaviour. Herein, we discuss the recent efforts in experimentally verifying the unusual exciton interactions supported with quantum chemical computations, primarily focusing on the less explored null exciton splitting. Exciton engineering can be realized through synthetic modifications that can additionally offer control over the assorted non-covalent interactions for orchestrating precise supramolecular assembly, along with molecular editing. The task of attaining a minimal excitonic coupling through an orthogonally cross-stacked crystalline architecture envisaged to offer a monomer-like optical behaviour was first reported in 1,7-dibromoperylene-3,4,9,10-tetracarboxylic tetrabutylester (PTE-Br2). The attempt to stitch molecules covalently in an orthogonal fashion to possess null excitonic character culminated in a spiro-conjugated perylenediimide dimer exhibiting a monomer-like spectroscopic signature. The computational and experimental efforts to map the emergent properties of the cross-stacked architecture are also discussed here. Using the null aggregates formed by the interference effects between CT-mediated and Coulombic couplings in the molecular array is another strategy for achieving monomer-like spectroscopic properties in molecular assemblies. Moreover, identifying supramolecular assemblies with precise angle-dependent properties can have implications in functional material design, and this review can provide insights into the uncharted realm of null exciton splitting.

Abstract Image

保持发色团交叉:零激子分裂的证据
由于其令人兴奋的光物理性质和光电应用,对有机发色团超分子组装的基本理解和设计策略的发展引起了人们无尽的兴趣。Jelley和Scheibe对染料聚集体的独立发现是聚集体光物理领域显著进步的开始。随后的研究证明,Davydov、Kasha及其同事基于长程库仑耦合独立提出了一个定义聚集体中激子相互作用的特殊模型。令人着迷的是,Kasha预测正交交叉堆叠的分子过渡偶极排列具有零激子相互作用,导致光谱上不耦合的分子组装,几十年来一直缺乏实验特征。已经有几次尝试鉴定和探测非典型分子聚集体,以解码其光学行为。在此,我们讨论了最近在实验上验证量子化学计算支持的不寻常激子相互作用的努力,主要集中在较少探索的零激子分裂上。激子工程可以通过合成修饰来实现,合成修饰还可以控制各种非共价相互作用,以协调精确的超分子组装,以及分子编辑。在1,7-二溴苝-3,4,9,10-四羧酸四丁酯(PTE-Br2)中首次报道了通过正交交叉堆叠晶体结构实现最小激子耦合的任务,该结构旨在提供类似单体的光学行为。以正交方式共价缝合分子以具有零激子特性的尝试最终导致螺共轭的苝二酰亚胺二聚体表现出类似单体的光谱特征。本文还讨论了绘制交叉堆叠结构涌现特性的计算和实验工作。在分子阵列中使用由CT介导的和库仑耦合之间的干扰效应形成的零聚集体是在分子组装体中实现类单体光谱性质的另一种策略。此外,识别具有精确角度相关性质的超分子组装体可以对功能材料设计产生影响,这篇综述可以深入了解零激子分裂的未知领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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