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Syntheses and quadratic nonlinear optical properties of salts containing benzothiazolium electron-acceptor groups

机译:含有苯并噻唑鎓电子受体基团的盐的合成和二次非线性光学性质

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摘要

A series of chromophoric salts has been prepared in which electron-rich 4-(dimethylamino) phenyl groups are connected via polyenyl chains to electron-accepting N-methylpyridinium or 3-methylbenzothiazolium units. These compounds have been characterized by using various techniques, including electronic absorption spectroscopy and cyclic voltammetry. Single-crystal X-ray structures have been determined for several salts, all of which crystallize centrosymmetrically. Molecular quadratic nonlinear optical (NLO) responses have been determined using femtosecond hyper-Rayleigh scattering (HRS) at 1300 and 800 nm and via Stark (electroabsorption) spectroscopic studies on the intense, visible pi ->pi* intramolecular charge-transfer (ICT) bands. Large red shifts in the ICT transitions on replacing a pyridinium with a benzothiazolium unit indicate that the latter acts as a more effective electron acceptor. Both HRS and Stark measurements show that the static first hyperpolarizability, beta(0) increases with polyene chain extension in both types of chromophore, and the benzothiazolium salts have larger NLO responses than their pyridinium analogues. The results of time-dependent density functional theory calculations using a polarizable solvent continuum model agree with the observation that, beta(0) increases with chain lengthening, but the observed superiority of the benzothiazolium acceptor is not predicted either in the ICT energies or, beta(0) values. Coupled perturbed Hartree-Fock and semiempirical INDO/S calculations similarly fail to reproduce this principal conclusion from the experimental studies.
机译:已经制备了一系列发色盐,其中富电子的4-(二甲基氨基)苯基通过聚烯基链连接到接受电子的N-甲基吡啶或3-甲基苯并噻唑单元。这些化合物已经通过使用各种技术进行了表征,包括电子吸收光谱和循环伏安法。已经确定了几种盐的单晶 X 射线结构,所有这些盐都以中心对称方式结晶。使用 1300 和 800 nm 处的飞秒超瑞利散射 (HRS) 以及通过对强烈的可见 pi ->pi* 分子内电荷转移 (ICT) 带的 Stark(电吸收)光谱研究确定了分子二次非线性光学 (NLO) 响应。用苯并噻唑单元替换吡啶时,ICT跃迁中的大红移表明后者充当更有效的电子受体。HRS 和 Stark 测量结果均表明,两种发色团的静态第一超极化率 beta(0) 均随着多烯链延伸而增加,并且苯并噻唑盐的 NLO 响应大于其吡啶类似物。使用可极化溶剂连续谱模型进行瞬态密度泛函理论计算的结果与以下观察结果一致:β(0)随着链的延长而增加,但观察到的苯并噻唑鎓受体的优越性在ICT能量或β(0)值中均未预测。耦合扰动的Hartree-Fock和半经验的INDO/S计算同样无法从实验研究中重现这一主要结论。

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