The phototoxicity of polycyclic aromatic hydrocarbons: a theoretical study of excited states and correlation to experiment

Leon D. Betowski, Mark Enlow , Lee Riddick
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引用次数: 19

Abstract

Investigators using models to determine the phototoxic effects of sunlight on polycyclic aromatic hydrocarbons (PAHs) have invoked the excited states of the molecule as important in elucidating the mechanism of these reactions. Energies of actual excited states were calculated for ten PAHs by several ab initio methods. The main method used for these calculations was the Configuration Interaction approach, modeling excited states as combinations of single substitutions out of the Hartree–Fock ground state. These calculations correlate well with both experimentally measured singlet and triplet state energies and also previous HOMO–LUMO gap energies that approximate the singlet state energies. The excited state calculations then correlate well with general models of photo-induced toxicity based for the PAHs.

多环芳烃的光毒性:激发态的理论研究及与实验的关联
研究人员使用模型来确定阳光对多环芳烃(PAHs)的光毒性作用,并将分子的激发态作为阐明这些反应机制的重要因素。用几种从头算方法计算了10种多环芳烃的实际激发态能量。用于这些计算的主要方法是配置相互作用方法,将激发态建模为Hartree-Fock基态之外的单个替换的组合。这些计算结果与实验测量的单重态和三重态能量以及先前近似于单重态能量的HOMO-LUMO间隙能量都有很好的相关性。激发态计算与基于多环芳烃的光致毒性的一般模型相关联。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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