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供体和受体取代基对4-乙炔基-2,1,3-苯并噻二唑衍生物光物理性质的影响。

Effects of donor and acceptor substituents on the photophysics of 4-ethynyl-2,1,3-benzothiadiazole derivatives.

作者信息

Pradhan Asit Kumar, Ray Manaswini, Parthasarathy Venkatakrishnan, Mishra Ashok Kumar

机构信息

Department of Chemistry, Indian Institute of Technology Madras, Chennai 600036, Tamil Nadu, India.

出版信息

Phys Chem Chem Phys. 2023 Nov 1;25(42):29327-29340. doi: 10.1039/d3cp03318j.

Abstract

The present work explores the photophysical, electrochemical, and fluorescence polarization properties of a group of π-conjugated phenylethynyl-2,1,3-benzothiadiazole derivatives (BTDs) bearing different electron-donating (ED) or electron-withdrawing (EW) substituents at the position of the phenylethynyl moiety. The BTDs were synthesized through the Sonogashira cross-coupling reaction between 4-bromo-2,1,3-benzothiadiazole and the respective -substituted phenylethynyl derivatives. The BTDs with the EW-substituents show relatively weak solvatochromic behavior, while the BTDs with the strong ED-substituents like methoxy and ,-dimethylamino-based substituents (BTDPhOMe and BTDPhNMe2) exhibit a pronounced solvatochromic behavior. The change in dipole moments in the excited states of the derivatives was calculated using Lippert-Mataga plots. The conclusions drawn on the spectral behavior of the molecules could be rationalized by TD-DFT calculations involving electron density difference (EDD) maps that correlate with the ICT characteristics of the molecules. The experimental and theoretical calculations reveal that the BTDs with the strong ED-substituents (strong push-pull type BTDs) have a strong ICT character in the excited state. These strong push-pull type BTDs show high fluorescence quantum yield () in apolar solvents and low in polar solvents. In contrast, the BTDs with the weak ED-substituents (weak push-pull type BTDs) and EW-substituents (pull-pull type BTDs) have a weaker ICT character with low in apolar and high in polar solvent media. There is good a agreement among the HOMO-LUMO band gaps obtained from absorption spectroscopy and electrochemical studies and theoretical calculations. The fluorescence anisotropy measurement in the glycerol medium shows that the studied BTDs generally exhibit higher sensitivity towards microviscosity than the traditional DPH fluorescence anisotropy probe.

摘要

本工作探究了一组在苯乙炔基部分的 位置带有不同供电子(ED)或吸电子(EW)取代基的π共轭苯乙炔基-2,1,3-苯并噻二唑衍生物(BTDs)的光物理、电化学和荧光偏振性质。BTDs 通过 4-溴-2,1,3-苯并噻二唑与相应的 -取代苯乙炔基衍生物之间的 Sonogashira 交叉偶联反应合成。带有 EW 取代基的 BTDs 表现出相对较弱的溶剂化显色行为,而带有强 ED 取代基如甲氧基和 ,-二甲基氨基取代基(BTDPhOMe 和 BTDPhNMe2)的 BTDs 表现出明显的溶剂化显色行为。使用 Lippert-Mataga 图计算了衍生物激发态偶极矩的变化。关于分子光谱行为得出的结论可以通过涉及与分子 ICT 特性相关的电子密度差(EDD)图的 TD-DFT 计算来合理化。实验和理论计算表明,带有强 ED 取代基的 BTDs(强推挽型 BTDs)在激发态具有很强的 ICT 特性。这些强推挽型 BTDs 在非极性溶剂中显示出高荧光量子产率(),而在极性溶剂中显示出低 。相比之下,带有弱 ED 取代基的 BTDs(弱推挽型 BTDs)和 EW 取代基的 BTDs(拉-拉型 BTDs)具有较弱的 ICT 特性,在非极性溶剂中 低,在极性溶剂介质中 高。从吸收光谱、电化学研究和理论计算获得的 HOMO-LUMO 带隙之间有很好的一致性。在甘油介质中的荧光各向异性测量表明,所研究的 BTDs 通常比传统的 DPH 荧光各向异性探针表现出对微粘度更高的敏感性。

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