首页> 外文期刊>The Journal of Chemical Physics >Excitation energy calculation of conjugated hydrocarbons: A new Pariser-Parr-Pople model parameterization approaching CASPT2 accuracy
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Excitation energy calculation of conjugated hydrocarbons: A new Pariser-Parr-Pople model parameterization approaching CASPT2 accuracy

机译:共轭碳氢化合物的激发能计算:一种新的Pariser-Parr-Pople模型参数化,其精确度接近CASPT2

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摘要

A new parameterization for the Pariser-Parr-Pople (PPP) model for conjugated hydrocarbons is proposed in this work. The distance-dependence of PPP parameters are obtained from CASPT2 ground state and low-lying excited state energies of ethylene and its cation at various C-C single bond lengths and are fitted to a set of carefully chosen mathematical functions. Our new PPP model is applied to the calculation of vertical singlet-triplet energy gaps and the excitation energies for lowlying π → π * valence excitations in various π-conjugated molecules. Results with the new PPP model are consistently better than the standard PPP model in use. It often surpasses density functional theory and single-reference excited state methods such as configuration interaction singles or time-dependent density functional theory in terms of its accuracy and agrees reasonably well with high-level theories or experiments.
机译:在这项工作中,提出了用于共轭烃的Pariser-Parr-Pople(PPP)模型的新参数化。 PPP参数的距离相关性是从CASPT2基态和乙烯及其阳离子在各种C-C单键长度下的低位激发态能量获得的,并拟合了一组精心选择的数学函数。我们将新的PPP模型应用于垂直单重态-三重态能隙的计算以及在各种π共轭分子中降低π→π*价价激发的激发能。新PPP模型的结果始终优于使用中的标准PPP模型。在准确性方面,它经常超过密度泛函理论和单参考激发态方法(例如组态相互作用单数或时间相关的密度泛函理论),并且与高级理论或实验相当吻合。

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