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具有高固有极化率的分子的计算研究。

Computational study of molecules with high intrinsic hyperpolarizabilities.

机构信息

Centre for Computational Physics, Physics Department, University of Coimbra, P-3004-516, Coimbra, Portugal.

出版信息

J Phys Chem A. 2010 Oct 7;114(39):10676-83. doi: 10.1021/jp105707q.

Abstract

In the current manuscript we present the results of a computational study on a series of chromophores with enhanced intrinsic hyperpolarizability. The high hyperpolarizability values of these molecules were previously reported and were achieved by making use of aromatic moieties in order to modulate the aromatic stabilization energy along the conjugated bridge between the donor and the acceptor. Calculations were performed using semiempirical, DFT, and TDDFT methods, and the results reproduce the trend determined experimentally for the first hyperpolarizability values. Several calculation schemes were used, and the best agreement was achieved when long-range Hartree-Fock exchange corrections and solvent effects are included in the DFT calculations. The long-range corrections proved to be especially important for the azobenzene derivatives, which otherwise have their hyperpolarizability overestimated considerably in the DFT calculations. The results are also analyzed within the framework of a two-level model, which correctly reproduces the trend in the hyperpolarizabilities of the molecules under study.

摘要

在当前的手稿中,我们展示了一系列具有增强固有二阶极化率的生色团的计算研究结果。这些分子的高二阶极化率值之前已经有报道,并通过在供体和受体之间的共轭桥中使用芳香族部分来调节芳香稳定能来实现。使用半经验、DFT 和 TDDFT 方法进行了计算,结果再现了实验确定的第一个二阶极化率值的趋势。使用了几种计算方案,当在 DFT 计算中包含远程 Hartree-Fock 交换校正和溶剂效应时,得到了最佳的一致性。远程校正对于偶氮苯衍生物尤为重要,否则它们的二阶极化率在 DFT 计算中会被大大高估。结果还在双能级模型的框架内进行了分析,该模型正确地再现了所研究分子的极化率趋势。

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