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首页> 外文期刊>Chemical Physics Letters >Comparison of static and dynamic methods of treatment of anharmonicity for the vibrational study of isolated and aqueous forms of guanine
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Comparison of static and dynamic methods of treatment of anharmonicity for the vibrational study of isolated and aqueous forms of guanine

机译:静态和动态方法对分离和水鸟嘌呤形式振动研究的非谐性比较

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摘要

This theoretical study provides the anharmonic vibrational wavenumbers of isolated and aqueous guanine. They were performed at the DFT B3LYP/6-31+G(d,p) level of theory using two different ways for the treatment of anharmonicity: time-independent (VPT2) and time-dependent (molecular dynamics) approaches. The wavenumbers obtained are compared to experimental data for isolated and aqueous forms: the VPT2 approach is slightly better than MD, especially for the determination of stretching and wagging (NH) motions. Finally, the structural model of solvatation used for aqueous guanine which combines an explicit solvent model with a polarizable continuum model (PCM) was validated.
机译:该理论研究提供了分离的鸟嘌呤和含水鸟嘌呤的非谐振动波数。它们是在DFT B3LYP / 6-31 + G(d,p)的理论水平上进行的,使用两种不同的方法来处理非谐性:非时间依赖性(VPT2)和非时间依赖性(分子动力学)。将获得的波数与分离和含水形式的实验数据进行比较:VPT2方法比MD略好,特别是在确定拉伸和摆动(NH)运动时。最后,验证了鸟嘌呤水溶液的溶剂化结构模型,该模型将显式溶剂模型与可极化连续体模型(PCM)相结合。

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