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含二嗪环作为π共轭连接体的偶极 NLO 生色团。

Dipolar NLO Chromophores Bearing Diazine Rings as π-Conjugated Linkers.

机构信息

Institut des Sciences Chimiques de Rennes UMR CNRS 6226, IUT de Lannion, Université de Rennes 1 , rue Edouard Branly, BP 30219, F22302 Lannion Cedex, France.

Institute of Organic Chemistry and Technology, Faculty of Chemical Technology, University of Pardubice , Studentská 573, Pardubice 53210, Czech Republic.

出版信息

J Org Chem. 2017 Sep 15;82(18):9435-9451. doi: 10.1021/acs.joc.7b01442. Epub 2017 Sep 5.

Abstract

The synthesis of a series of push-pull derivatives bearing triphenylamine electron-donating group, cyclopenta[c]thiophen-4,6-dione electron acceptor and various π-linkers including (hetero)aromatic fragments is reported. All target chromophores with systematically varied π-linker structure were further investigated by electrochemistry, absorption measurements, and EFISH experiments in conjunction with DFT calculations. Based on electrochemical and photophysical measurements, when a polarizable 2,5-thienylene moiety is embedded into the chromophore π-backbone the highest intramolecular charge transfer (ICT) is observed. Benzene, pyrimidine, and pyridazine derivatives exhibit lower polarizability and extent of the ICT across these π-linkers. The elongation of the π-conjugated system via additional ethenylene linker results in a significant reduction of the HOMO-LUMO gap and an enhancement of the NLO response. Whereas it does not significantly influence electrochemical and linear optical properties, the orientation of the pyrimidine ring seems to be a key parameter on the μβ value due to significant variation of the dipolar moment (μ) value. In 2a and 2c, pyrimidine is oriented to behave as an acceptor and thus generate dipolar molecule with μ above 5 D, whereas in 2b and 2d ground state dipole moment is significantly reduced. This study seems to indicate a high aromaticity of pyrimidine and pyridazine derivatives, close to the benzene analogues and significantly higher than thiophene analogues.

摘要

本报告合成了一系列含有三苯胺给电子基团、环戊[c]噻吩-4,6-二酮受体和各种π-连接体(包括杂芳环片段)的推拉衍生物。所有具有系统变化的π-连接体结构的目标发色团都通过电化学、吸收测量和 EFISH 实验以及 DFT 计算进一步进行了研究。基于电化学和光物理测量,当可极化的 2,5-噻吩基部分嵌入到发色团π-骨架中时,观察到最高的分子内电荷转移(ICT)。苯、嘧啶和哒嗪衍生物的极化率和 ICT 在这些π-连接体中的程度较低。通过附加亚乙基连接体延长π-共轭体系会导致 HOMO-LUMO 能隙显著减小,并增强 NLO 响应。虽然它不会显著影响电化学和线性光学性质,但嘧啶环的取向似乎是μβ值的关键参数,因为偶极矩(μ)值有很大的变化。在 2a 和 2c 中,嘧啶取向为作为受体,从而产生具有超过 5 D 的偶极矩的偶极分子,而在 2b 和 2d 中,基态偶极矩显著降低。这项研究似乎表明嘧啶和哒嗪衍生物具有较高的芳香性,接近于苯类似物,明显高于噻吩类似物。

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