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A bifunctional smart material: the synthesis of a metal-free black pigment for optoelectronic applications from an organic semiconducting molecular rod

机译:双功能智能材料:从有机半导体分子棒合成用于光电应用的无金属黑色颜料

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摘要

Purpose: This paper aims to synthesise and evaluate the properties of a novel smart material consisting of a metal-free organic black pigment with a unique chromophore for bifunctional applications in optoelectronics. Design/methodology/approach: A robust and highly efficient organic reaction, namely, a double [2 + 2] cycloaddition, was deployed to transform a rod-like structure for charge-transfer applications to a strongly conjugated light-absorbing molecule for both optical and electronic applications. Findings: The synthesis and characterisation of an air-stable metal-free black pigment is reported, which contains an unconventional donor–acceptor panchromatic chromophore with an absorption window spanning 600 nm; the compound was synthetically converted from an organic semiconducting molecular rod and retains strong charge-transfer properties. The chromophore comprises tetracyanoquinodimethane adduct on either side of a dithienothiophenyl core, capped with hexyl thiophenes that ensure solubility in common organic solvents. Its propensity to form excellent thin films on different substrates such as glass and paper, with a total opacity in organic solvent, gives it the potential for wide-ranging applications in organic optoelectronics. Research limitations/implications: The synthetic chemistry and fundamental properties are investigated in the present study, with more detailed treatments and analysis to be soon developed. One leading smart material is presented, with further derivatives under investigation. Practical implications: The work presented shows the possibility of converting structures from one application to another with relative ease, but how they retain properties for both, using well-known and facile conditions. Originality/value: The structures are novel and an enhanced air-stable organic panchromatic chromophore is reported for processing in common organic solvents.
机译:目的:本文旨在合成和评估新型智能材料的特性,该材料由无金属有机黑色颜料和独特的生色团组成,可用于光电双功能应用。设计/方法/方法:部署鲁棒且高效的有机反应,即双[2 + 2]环加成反应,将用于电荷转移应用的棒状结构转化为强共轭的光吸收分子,从而实现两种光学和电子应用。发现:报道了一种空气稳定的无金属黑色颜料的合成和表征,该颜料包含一个非常规的供体-受体全色发色团,其吸收窗跨度为600 nm。该化合物是从有机半导体分子棒合成而来,并保留了很强的电荷转移性能。发色团在二噻吩并噻吩核的任一侧均包含四氰基喹二甲烷加合物,并用己基噻吩封端,以确保在常见有机溶剂中的溶解度。它倾向于在不同的基材(例如玻璃和纸张)上形成优异的薄膜,并且在有机溶剂中具有完全不透明性,这使其有可能在有机光电领域中广泛应用。研究的局限性/意义:在本研究中对合成化学和基本性质进行了研究,即将进行更详细的处理和分析。介绍了一种领先的智能材料,并正在研究其他衍生物。实际意义:提出的工作显示了相对容易地将结构从一种应用程序转换为另一种应用程序的可能性,但是在众所周知的条件下,它们如何为这两种应用程序保留属性。独创性/价值:结构新颖,据报道可在常规有机溶剂中加工,使用增强的空气稳定有机全色发色团。

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