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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >3,4-Phenylenedioxythiophenes (PheDOTs) functionalized with electron-withdrawing groups and their analogs for organic electronics
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3,4-Phenylenedioxythiophenes (PheDOTs) functionalized with electron-withdrawing groups and their analogs for organic electronics

机译:3,4-苯二氧噻吩(Phedoto)用吸电子组和其用于有机电子产品的类似物官能化

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摘要

A novel, facile and efficient one-pot, microwave-assisted method of synthesis allowing an access to a new series of 3,4-phenylenedioxythiophene derivatives with electron-withdrawing groups at the benzene ring (EWG-PheDOT) and their analogs (with an expanded side -system or with heteroaromatic rings, ArDOT) by the reaction of 2,5-dialkoxycarbonyl-3,4-dihydroxythiophenes with electrophilic aromatic/heteroaromatic compounds in dipolar aprotic solvents has been described. Its applicability over a wide range of novel functionalized ArDOTs as promising building blocks for organic electronic materials has been demonstrated. The structures of selected ArDOTs have been determined by single-crystal X-ray diffraction. The electronic structure of conjugated polymers p[ArDOTs] based on synthesized novel thiophene monomers has been studied theoretically by the DFT PBC/B3LYP/6-31G(d) method. The performed calculations reveal that while the side functional groups are formally not in conjugation with the polymer main chain, they have an unprecedentedly strong effect on the HOMO/LUMO energy levels of conjugated polymers, allowing their efficient tuning by over the range of 1.6 eV. In contrast to that, the energy gaps of the polymers are almost unaffected by such functionalizations and vary within a range of only 0.05 eV. Computational predictions have been successfully confirmed in experiments: cyclic voltammetry shows a strong anodic shift of p-doping for the electron-withdrawing CF3 group functionalized polymer p[4CF(3)-PheDOT] relative to the unsubstituted p[PheDOT] polymer (by 0.55 V; DFT predicted the decrease of the HOMO by 0.58 eV), while very similar Vis-NIR absorption spectra for both polymers in the undoped state indicate that their optical energy gaps nearly coincide (E-g 0.04 eV).
机译:一种新颖的,容易和有效的单罐,微波辅助合成方法,允许在苯环(EWG-Phedot)及其类似物上用吸电子基团获得新的3,4-苯二氧噻吩衍生物的进入(用已经描述了通过2,5-二烷氧基羰基-3,4-二羟基烯烯烯烃的反应膨胀的侧面 - 系统或杂芳族环,甜菜蛋白,已经描述了二极管非质子溶剂中的亲电芳族/杂芳族化合物。已经证明了其在广泛的新型官能化玻璃滴虫上的适用性是有机电子材料的承诺模块。所选择的Ardots的结构已经通过单晶X射线衍射确定。通过DFT PBC / B3LYP / 6-31G(D)方法理论上研究了基于合成新的噻吩单体的共轭聚合物P [ardots]的电子结构。所进行的计算表明,虽然侧面官能团不与聚合物主链式缀合,但它们对缀合聚合物的HOMO / LUMO能量水平具有前所未有的强烈影响,允许其有效调整在1.6eV的范围内。与此相反,聚合物的能量间隙几乎不受这种官能化的影响,并且在仅0.05eV的范围内变化。在实验中成功证实了计算预测:循环伏安,相对于未取代的Pβ聚合物(通过0.55℃,循环伏安v; DFT预测HOMO的减少0.58eV),而在未掺杂状态下两种聚合物的非常相似的VIR-NIR吸收光谱表明它们的光学能量几乎重合(例如,<0.04eV)。

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