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Semiclassical molecular dynamics simulations of excited state double-proton transfer in 7-azaindole dimers

机译:7-氮杂吲哚二聚体激发态双质子转移的半经典分子动力学模拟

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An ab initio excited state potential energy surface is constructed for describing excited state double proton transfer in the tautomerization reaction of photon-excited 7-azaindole dimers, and the ultrafast dynamics is simulated using the semiclassical (SC) initial value representation (IVR). The potential energy surface, determined in a reduced dimensionality, is obtained at the CIS level of quantum chemistry, and an approximate version of the SC-IVR approach is introduced which scales linearly with the number of degrees of freedom of the molecular system. The accuracy of this approximate SC-IVR approach is verified by comparing our semiclassical results with full quantum mechanical calculations. We find that proton transfer usually occurs during the first intermonomer symmetric-stretch vibration, about 100 fs after photoexcitation of the system, and produces an initial 15 percent population decay of the reactant base-pair, which is significantly reduced by isotopic substitution.
机译:构造了一个从头开始的激发态势能表面,用于描述光子激发的7-氮杂吲哚二聚体的互变异构反应中的激发态双质子转移,并使用半经典(SC)初始值表示(IVR)模拟了超快动力学。在量子化学的CIS级获得以降维确定的势能表面,并引入了SC-IVR方法的近似版本,该方法随分子系统的自由度数线性缩放。通过将我们的半经典结果与全量子力学计算进行比较,验证了这种近似SC-IVR方法的准确性。我们发现质子转移通常发生在第一次单体间对称拉伸振动期间,在系统光激发后约100 fs,并且产生反应物碱基对的初始15%种群衰减,这通过同位素取代而大大降低。

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