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Absorption spectra of azobenzenes simulated with time-dependent density functional theory

机译:时变密度泛函理论模拟的偶氮苯吸收光谱

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摘要

Using time-dependent density functional theory and the polarizable continuum model, we have simulated the absorption spectra of an extended series of azobenzene dyes. First, we have determined a theoretical level optimal for this important class of dyes, and it turned out that a C-PCM-CAM-B3LYP/6- 311+G(d,p)//C-PCM-B3LYP/6-311G(d,p) approach represents an effective compromise between chemical accuracy and computational cost. In a second stage, we have compared the theoretical and experimental transition energies for 46 n → π* and 141 π → π* excitations. For the full set, that spans over a 302-565 nm domain, we obtained a mean absolute deviation of 13 nm (0.10 eV) and a linear correlation coefficient of 0.95, illustrating the accuracy of our approach, though some significant outliers pertained. In a last step, the impact of several modifications, that is, trans/cis isomerization, variation of the acidity of the medium and azo/hydrazo tautomerism have been modeled with two functionals.
机译:使用随时间变化的密度泛函理论和可极化的连续谱模型,我们模拟了一系列扩展的偶氮苯染料的吸收光谱。首先,我们确定了这一重要染料类别的最佳理论水平,结果证明C-PCM-CAM-B3LYP / 6- 311 + G(d,p)// C-PCM-B3LYP / 6- 311G(d,p)方法代表了化学准确性和计算成本之间的有效折衷。在第二阶段,我们比较了46 n→π*和141π→π*激发的理论和实验跃迁能。对于整个跨302-565 nm域的集合,我们获得了13 nm(0.10 eV)的平均绝对偏差和0.95的线性相关系数,说明了我们方法的准确性,尽管存在一些重要的异常值。在最后一步中,已经用两种功能模拟了几种修饰的影响,即反式/顺式异构化,介质酸度的变化和偶氮/肼互变异构。

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