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Mono and di-substituted BODIPY with electron donating carbazole, thiophene, and 3,4-ethylenedioxythiophene units

机译:用电子提供咔唑,噻吩和3,4-亚乙二氧基噻吩单元的单声道和二取代的Bodipy

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摘要

In an effort to extend the conjugation system of boron-dipyrrin (BODIPY), the dye was coupled with polymerisable units of carbazole, alkylthiophene, and 3,4-ethylenedioxythiophene (EDOT). Due to electron donating character of the units connected to the strong electron accepting segment of tri-coordinated boron, the optical and electrochemical properties of the dye changed, and followed the strength of the electron donating substituent. All studied compounds exhibited electroactivity in both anodic and cathodic potential ranges, however, electropolymerisation was only observed for BODIPY modified with EDOT, leading to trimeric and tetrameric substituents. Potential controlled optical changes (spectroelectrochemistry) and in situ spin density distribution measurements, supported by quantum chemical calculations using density functional theory, were undertaken in order to understand the reversibility of the electrochemical processes. Hyperfine split ESR spectra of the radical anion species were successfully modelled revealing intriguing, hyperconjugation type unpaired spin delocalisation patterns. (C) 2018 Elsevier Ltd. All rights reserved.
机译:努力延长硼 - 二滤布蛋白(BODIPY)的共轭系统,染料与咔唑,烷基噻吩和3,4-亚乙二氧基苯烯(EDOT)的可聚合单元偶联。由于连接到Tri-Cooldinated硼的强电子接受区段的单元的电子捐赠特性,染料的光学和电化学性能发生变化,并遵循电子给予取代基的强度。所有所研究的化合物在阳极和阴极电位范围内表现出电分子,然而,仅观察到具有编排的BODIPY的电聚合,导致三聚体和四聚取代基。采用密度泛函理论的量子化学计算支持的潜在控制光学变化(光谱电化学)和原位自旋密度分布测量,以了解电化学过程的可逆性。自由基阴离子物种的高血清分裂ESR光谱成功建模揭示有趣,超强凝固型未配对旋转旋转划分模式。 (c)2018年elestvier有限公司保留所有权利。

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