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二噻吩并[3,2-b:2',3'-d]噻吩并[3,2-b]吡咯并[1,2-a]苯并噻吩酮螺吡喃衍生物的氧化还原和光致异构化开关对二阶光学非线性的影响:DFT 研究。

Redox and photoisomerization switching of the second-order optical nonlinearity of a tetrathiafulvalene derivative of spiropyran across five states: a DFT study.

机构信息

College of Chemical Engineering, Northeast Dianli University, Jilin City, 132012, PR China.

出版信息

Phys Chem Chem Phys. 2012 Apr 21;14(15):5297-306. doi: 10.1039/c2cp23293f. Epub 2012 Mar 8.

Abstract

Second-order nonlinear optical properties of a tetrathiafulvalene (TTF) derivative of spiropyran have been studied based on density functional theory (DFT) combined with the finite field (FF) calculations. Our DFT-FF calculations confirm a switching behavior of the static first hyperpolarizability caused by the redox and photochromic reaction. The photochromic reaction generates spiropyran-merocyanine conversion by reversible cleavage of the C-O bond, which is relative to the close- and open-ring forms 1-c and 1-o. The open-ring form 1-o displays the large static first hyperpolarizability relative to its close-ring form 1-c according to our DFT-FF calculations with three functionals. The electronic structure analysis and spin unrestricted calculations show that the redox processes significantly affect the geometrical structure of the TTF unit, and thus enhance the static first hyperpolarizabilities. The one-electron-oxidized species having good planar structure of the TTF unit are ~30 and ~200 times as large as that of the neutral compounds 1-c and 1-o, respectively. But the difference in the static first hyperpolarizability between one- and two-electron-oxidized states of spiropyran species is not substantial according to our DFT-FF calculations, and the spiropyran-merocyanine conversion of two-electron-oxidized species does not largely affect their static first hyperpolarizability. On the basis of the large change in the static first hyperpolarizability, our DFT-FF calculations support a five-state switching of the static first hyperpolarizability based on the redox and photoisomerization.

摘要

基于密度泛函理论(DFT)结合有限场(FF)计算,研究了螺吡喃四硫富瓦烯(TTF)衍生物的二阶非线性光学性质。我们的 DFT-FF 计算证实了静态第一超极化率由于氧化还原和光致变色反应而发生的开关行为。光致变色反应通过可逆断裂 C-O 键生成螺吡喃-硫代色烯转化,这与闭环和开环形式 1-c 和 1-o 有关。根据我们使用三种函数的 DFT-FF 计算,开环形式 1-o 显示出比其闭环形式 1-c 更大的静态第一超极化率。电子结构分析和无自旋计算表明,氧化还原过程显著影响 TTF 单元的几何结构,从而增强了静态第一超极化率。具有 TTF 单元良好平面结构的单电子氧化物种分别是中性化合物 1-c 和 1-o 的约 30 和 200 倍。但是,根据我们的 DFT-FF 计算,螺吡喃物种的一价和二价氧化态的静态第一超极化率之间的差异并不明显,并且二价氧化态的螺吡喃-硫代色烯转化不会对其静态第一超极化率产生很大影响。基于静态第一超极化率的大幅变化,我们的 DFT-FF 计算支持基于氧化还原和光异构化的静态第一超极化率的五态切换。

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