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Next-generation quantum theory of atoms in molecules for the S-1/S-0 conical intersections in dynamics trajectories of a light-driven rotary molecular motor

机译:用于分子的下一代量子原子分子用于S-1 / S-0锥形交叉的动力学旋转分子电动机动力学轨迹

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摘要

Next-generation quantum theory of atoms in molecules was applied to analyze, along an entire bond path, intramolecular interactions known to influence the photoisomerization dynamics of a light-driven rotary molecular motor. The 3D bond-path framework set B-0,B-1 constructed from the least and most preferred directions of electronic motion, provided new insights into the bonding leading to different S-1 state lifetimes including the first quantification of covalent character of a closed-shell intramolecular bond path. We undertook the first use of the stress tensor trajectory T-sigma(s) analysis on selected nonadiabatic molecular dynamics trajectories with the electron densities obtained using the ensemble density functional theory method. The stress tensor T-sigma(s) analysis was found to be well suited to follow the dynamics trajectories that included the S-0 and S-1 electronic states through the conical intersection and also provided to a new measure to assess the degree of purity of the axial bond rotation for the design of rotary molecular motors.
机译:沿着整个粘合路径,沿着整个粘合路径施加分子中的下一代量子原子理论以分析,该分子分子相互作用影响光驱动旋转分子马达的光学分子动态。由最小和最优选的电子运动方向构造的3D键合路径框架设置B-0,为粘接提供了新的洞察,导致不同的S-1状态寿命,包括封闭的共价特征的第一量化-Shell分子内粘合路径。我们首次使用使用该集合密度泛函理论方法获得的电子密度对所选择的非等级分子动力学轨迹进行压力张量轨迹T-Sigma分析。发现应力张量T-Sigma分析非常适合于通过锥形交叉点包括S-0和S-1电子状态的动态轨迹,并提供给评估纯度度的新措施旋转分子电机设计的轴向键旋转。

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