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Solvent effects on the excited-state double proton transfer mechanism in the 7-azaindole dimer: a TDDFT study with the polarizable continuum model

机译:7- azaindole二聚体中兴奋状态双质子转移机制的溶剂效应:具有可极化连续体模型的TDDFT研究

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Solvent effects on the excited-state double proton transfer (ESDPT) mechanism in the 7-azaindole (7AI) dimer were investigated using the time-dependent density functional theory (TDDFT) method. Excited-state potential energy profiles along the reaction paths in a locally excited (LE) state and a charge transfer (CT) state were calculated using the polarizable continuum model (PCM) to include the solvent effect. A series of non-polar and polar solvents with different dielectric constants were used to examine the polarity effect on the ESDPT mechanism. The present results suggest that in a non-polar solvent and a polar solvent with a small dielectric constant, ESDPT follows a concerted mechanism, similar to the case in the gas phase. In a polar solvent with a relatively large dielectric constant, however, ESDPT is likely to follow a stepwise mechanism via a stable zwitterionic intermediate in the LE state on the adiabatic potential energy surface, although inclusion of zero-point vibrational energy (ZPE) corrections again suggests the concerted mechanism. In the meantime, the stepwise reaction path involving the CT state with neutral intermediates is also examined, and is found to be less competitive than the concerted or stepwise path in the LE state in both non-polar and polar solvents. The present study provides a new insight into the experimental controversy of the ESDPT mechanism of the 7AI dimer in a solution.
机译:使用时间依赖性密度泛函理论(TDDFT)方法研究了7-唑底底(7ai)二聚体中激发态双质子转移(ESDPT)机制的溶剂效应。使用可极化的连续体模型(PCM)计算沿着当地激发(LE)状态和电荷转移(CT)状态的反应路径的激发状态电位能量谱,以包括溶剂效应。使用具有不同介电常数的一系列非极性和极性溶剂来检查对ESDPT机制的极性效应。本结果表明,在非极性溶剂和具有小介电常数的极性溶剂中,ESDPT遵循一点机构,类似于气相中的情况。然而,在具有相对大的介电常数的极性溶剂中,ESDPT可能在绝热势能表面上通过稳定的两性离子中间体通过稳定的两性离子中间体遵循逐步机构,尽管再次包含零点振动能量(ZPE)校正建议协同机制。同时,还检查了涉及CT状态与中性中性中性中性的逐步反应路径,并且被发现比非极性和极性溶剂中Le状态下的齐全或逐步路径较低。本研究提供了新的洞察于解决方案中7ai二聚体的ESDPT机制的实验争议。

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