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Solvent effects on the ultrafast nonradiative deactivation mechanisms of thymine in aqueous solution : Excited-state QM/MM molecular dynamics simulations

机译:溶剂对胸腺嘧啶超快非辐射失活机理的影响:激发态QM / MM分子动力学模拟

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摘要

On-the-fly excited-state quantum mechanics/molecular mechanics molecular dynamics (QM/MM-MD) simulations of thymine in aqueous solution are performed to investigate the role of solvent water molecules on the nonradiative deactivation process. The complete active space second-order perturbation theory (CASPT2) method is employed for a thymine molecule as the QM part in order to provide a reliable description of the excited-state potential energies. It is found that, in addition to the previously reported deactivation pathway involving the twisting of the C-C double bond in the pyrimidine ring, another efficient deactivation pathway leading to conical intersections that accompanies the out-of-plane displacement of the carbonyl group is observed in aqueous solution. Decay through this pathway is not observed in the gas phase simulations, and our analysis indicates that the hydrogen bonds with solvent water molecules play a key role in stabilizing the potential energies of thymine in this additional decay pathway.
机译:进行了胸腺嘧啶在水溶液中的动态激发态量子力学/分子力学分子动力学(QM / MM-MD)模拟,以研究溶剂水分子在非辐射失活过程中的作用。为了提供对激发态势能的可靠描述,将完整的活性空间二阶扰动理论(CASPT2)方法用于胸腺嘧啶分子作为QM部分。已经发现,除了先前报道的涉及嘧啶环中CC双键的扭转的失活途径,还观察到了另一有效的失活途径,其导致伴随羰基的平面外位移的圆锥形相交。水溶液。在气相模拟中未观察到通过该途径的衰变,并且我们的分析表明,与溶剂水分子的氢键在稳定该附加衰变途径中的胸腺嘧啶的势能中起关键作用。

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