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Synthesis and properties of NLO chromophores with fine-tuned gradient electronic structures

机译:具有微调梯度电子结构的NLO发色团的合成与性能

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摘要

A novel series of heterocycle-based NLO chromophores based on different combinations of auxiliary donor (i.e., benzene, thiophene and pyrrole) and auxiliary acceptor (i.e., thiazole with different regiochemistries) were designed and synthesized. Due to the different electron-rich and poor nature of the auxiliary donors and acceptors, respectively, the resulting NLO chromophores have systematically varied ground-state electronic structures, as evidenced by the ~1H NMR, CV and UV-vis investigations. The nonlinear optical properties of the resulting NLO chromophores were studied by UV-vis spectroscopy, Hyper-Rayleigh scattering (HRS), and semi-empirical computations. All the chromophores have very large molecular hyperpolarizabilities (β_(1000 nm)) in the range of 704-1500 x 10~(-30) esu (or β0, 318-768 x 10~(-30) esu), which showed a great sensitivity to the gradient electronic structures. Upon increasing the electron density from benzene to thiophene and to pyrrole, substantial increases in (β0 were observed; significantly larger β0 values were also observed for NLO chromophores based on "matched" thiazole (C2 is connected to the acceptor) than those based on "un-matched" thiazole (C5 is connected to the acceptor). TGA investigations showed good thermal stability for the resulting NLO chromophores. However, with the increase of electron density of the auxiliary donor, a decrease in thermal and photochemical stability was observed. It is interesting to note that NLO chromophores based on triarylamine as the donor and thiazole as the auxiliary acceptor exhibited not only high thermal stability but also very large β0 values.
机译:设计并合成了一系列基于杂环的新型NLO发色团,它们基于辅助供体(即苯,噻吩和吡咯)和辅助受体(即具有不同区域化学特征的噻唑)的不同组合。由于〜1H NMR,CV和UV-vis研究证明,由于辅助供体和受体分别具有不同的富电子性质和差的性质,所得的NLO发色团具有系统地变化的基态电子结构。通过紫外可见光谱,超瑞利散射(HRS)和半经验计算研究了所得NLO发色团的非线性光学性质。所有发色团都具有非常大的分子超极化率(β_(1000 nm)),范围为704-1500 x 10〜(-30)esu(或β0,318-768 x 10〜(-30)esu)。对梯度电子结构非常敏感。从苯到噻吩和吡咯的电子密度增加后,(β0会显着增加;基于“匹配”噻唑(C2连接到受体)的NLO发色团的β0值也比基于“ TGA研究表明,生成的NLO发色团具有良好的热稳定性。但是,随着辅助供体电子密度的增加,热稳定性和光化学稳定性均下降。有趣的是,基于三芳基胺作为供体和噻唑作为辅助受体的NLO发色团不仅显示出高的热稳定性,而且还显示出非常大的β0值。

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