首页> 外文期刊>The Journal of Chemical Physics >Ultrafast excited-state deactivation of 9-methylhypoxanthine in aqueous solution: A QM/MM MD study
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Ultrafast excited-state deactivation of 9-methylhypoxanthine in aqueous solution: A QM/MM MD study

机译:QM / MM MD研究水溶液中9-甲基次黄嘌呤的超快激发态失活

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Photoinduced ultrafast non-adiabatic decay of 9-methylhypoxanthine (9MHPX) in aqueous solution was investigated by ab initio surface-hopping dynamics calculations using a combined quantum mechanical/molecular mechanical approach. The absorption spectra of 9MHPX in aqueous solution were also explored by the hybrid cluster-continuum model at the level of time-dependent density functional theory along with the polarizable continuum model (PCM). The static electronic-structure calculations indicate that the absorption spectra of 9MHPX simulated by TD-B3LYP/PCM and TD-X3LYP/PCM can reproduce very well the experimental findings, with the accuracy of about 0.20 eV. According to dynamics simulations, irradiation of 9MHPX populates the bright excited singlet S-1 state, which may undergo an ultrafast non-radiative deactivation to the S-0 state. The lifetime of the S-1 state of 9MHPX in aqueous solution is predicted to be 115.6 fs, slightly longer than that in the gas phase (88.8 fs), suggesting that the solvent water has no significant influence on the excited-state lifetime of 9MHPX. Such a behavior in 9MHPX is distinctly different from its parent hypoxanthine keto-N9H tautomer in which the excited-state lifetime of the latter in water solution was remarkably enhanced as compared to the gas phase. The significant difference of the photodynamical behaviors between 9MHPX and keto-N9H can be ascribed to their different hydrogen bond environment in aqueous solution. Published by AIP Publishing.
机译:通过从头开始的表面跳跃动力学计算,使用组合的量子力学/分子力学方法研究了水溶液中9-甲基次黄嘌呤(9MHPX)的光诱导超快非绝热衰变。混合簇-连续谱模型在时间依赖密度泛函理论和可极化连续谱模型(PCM)的水平上也探索了9MHPX在水溶液中的吸收光谱。静态电子结构计算表明,TD-B3LYP / PCM和TD-X3LYP / PCM模拟的9MHPX的吸收光谱可以很好地再现实验结果,精度约为0.20 eV。根据动力学模拟,9MHPX的辐射会填充明亮的激发单重态S-1状态,该状态可能会经历超快的非辐射钝化,直至达到S-0状态。预计9MHPX在水溶液中的S-1状态的寿命为115.6 fs,比气相(88.8 fs)的寿命稍长,这表明溶剂水对9MHPX的激发态寿命没有显着影响。 。 9MHPX中的这种行为与其母体次黄嘌呤酮-N9H互变异构体明显不同,后者与水溶液相比,后者在水溶液中的激发态寿命显着提高。 9MHPX和keto-N9H之间光动力学行为的显着差异可归因于它们在水溶液中的不同氢键环境。由AIP Publishing发布。

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