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首页> 外文期刊>International Journal of Quantum Chemistry >High first-hyperpolarizabilities of thiobarbituric acid derivative-based donor-pi-acceptor nonlinear optical-phores: Multiple theoretical investigations of substituents and conjugated bridges effect
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High first-hyperpolarizabilities of thiobarbituric acid derivative-based donor-pi-acceptor nonlinear optical-phores: Multiple theoretical investigations of substituents and conjugated bridges effect

机译:基于硫氨基吡啶酸衍生物的供体 - Pi-acceiveor非线性光学 - 磷的高级硫化性:取代基的多种理论研究和缀合的桥梁效应

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摘要

A number of compounds including thiobarbituric acid derivative-based acceptor unit and diverse donor moieties along with two types of pi-conjugated bridges have been constructed to aid in the design of the superior nonlinear optical (NLO) materials. The effect of varying the donor and bridge parts of this donor-bridge-acceptor system was analyzed in terms of structural and opto-electronic parameters such as bond length alternation and ultraviolet-visible absorption spectra. Various functionals with aug-cc-pVDZ basis set including B3LYP, PBE0, PBE38, BMK, CAM-B3LYP, and omega B97XD were employed to calculate the static and dynamic first-hyperpolarizabilities, and also the linear polarizabilities. Furthermore, the variation of the static first-hyperpolarizabilities has been explained satisfactorily in the light of the sum-over-states method and two-level model. The comprehensive study indicates that the coplanar compound D-5 with the low electronic absorption energy, strongest oscillator strength paired with the largest ground, and excited state dipole moment difference generates a dramatical increase in its static and dynamic first-hyperpolarizabilities, which would be the most worthwhile target for development as the NLO-phores.
机译:已经构建了许多包括硫氨基甲酸衍生物的受体单元和多种供体部分以及两种类型的PI-共轭桥的化合物,以帮助设计上部非线性光学(NLO)材料的设计。根据结构和光电参数(如粘合长度交替和紫外线可见吸收光谱)分析改变该供体和桥接件的施主和桥接部分的效果。使用包括B3LYP,PBE0,PBE38,BMK,CAM-B3LYP和OMEGA B97XD在内的AUG-CC-PVDZ基础集的各种功能用于计算静态和动态的第一超积分,以及线性偏振性。此外,鉴于总和的方法和两级模型,已经令人满意地解释了静态第一超积极性的变化。综合研究表明,具有低电子吸收能量,最强的振荡器强度与最大地面的最强的振荡器强度,激励状态偶极力矩差异产生静态和动态的第一超积极的炎性增加,这将是最重要的发展目标作为NLO-Phores。

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