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首页> 外文期刊>The Journal of Chemical Physics >Photoisomerization for a model protonated Schiff base in solution: Sloped/peaked conical intersection perspective
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Photoisomerization for a model protonated Schiff base in solution: Sloped/peaked conical intersection perspective

机译:模型中质子席夫碱在溶液中的光异构化:倾斜/峰顶圆锥形相交透视图

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摘要

The topographical character of conical intersections (CIs)-either sloped or peaked-has played a fundamental and important role in the discussion of the efficiency of CIs as photochemical "funnels." Here this perspective is employed in connection with a recent study of a model protonated Schiff base (PSB) cis to trans photoisomerization in solution [Malhado, J. Phys. Chem. A 115, 3720 (2011)10.1021/jp106096m]. In that study, the calculated reduced photochemical quantum yield for the successful production of trans product versus cis reactant in acetonitrile solvent compared to water was interpreted in terms of a dynamical solvent effect related to the dominance, for the acetonitrile case, of S_1 to S_0 nonadiabatic transitions prior to the reaching the seam of CIs. The solvent influence on the quantum yield is here re-examined in the sloped/peaked CI topographical perspective via conversion of the model's two PSB internal coordinates and a nonequilibrium solvent coordinate into an effective branching space description, which is then used to re-analyze the generalized Langevin equation/surface hopping results. The present study supports the original interpretation and enriches it in terms of topographical detail.
机译:圆锥形交叉点(CIs)的地形特征-倾斜的或峰形的-在讨论CIs作为光化学“漏斗”的效率方面起着根本性和重要的作用。在这里,这种观点与最近对模型质子化席夫碱(PSB)顺式在溶液中进行反光异构化的研究[Malhado,J. Phys。化学115,3720(2011)10.1021 / jp106096m]。在该研究中,相对于水,在乙腈溶剂中成功生产反式产物与顺式反应物相比,计算出的减少的光化学量子产率是根据动态溶剂效应来解释的。在到达CI之前进行过渡。通过将模型的两个PSB内部坐标和一个非平衡溶剂坐标转换为有效的分支空间描述,可在倾斜/峰状CI地形透视图中重新检查溶剂对量子产率的影响,然后将其用于重新分析广义Langevin方程/表面跳变结果。本研究支持原始解释并在地形细节方面丰富了它。

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