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Jahn-Teller distortions in the electronically excited states of sym-triazine

机译:三嗪的电子激发态中的Jahn-Teller畸变

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Electronic structure of the low-lying excited states of sym-triazine is analysed. Excitation energies are computed at the equilibrium ground state geometry and at the geometry of the cation. Full geometry optimisations of the selected excited states were performed, and the magnitude of the Jahn-Teller distortions in these states was quantified. Analysis of the electronic structure of these states offers a simple recipe for predicting the symmetry of the equilibrium geometries by a single point calculation of the vertical excitations. Whereas the states derived from excitations between a degenerate pair and a non-degenerate orbital form a familiar two-state conical intersection and are always distorted by virtue of the Jahn-Teller theorem, the states derived from the excitations between two pairs of degenerate orbitals form a more complicated glancing-like manifold characterised by negligible Jahn-Teller linear terms. Our analysis shows that regardless of the degeneracy pattern in these four-state manifolds, the top two states are always nearly-symmetric. The particular shape of the potential energy surfaces in a glancing intersection depends on the relative ordering of the states within the manifold, and different topologies of both types of intersections around D-3h geometry are discussed. Predicted symmetry of the excited states is compared to the optimised structures of the selected electronic states.
机译:分析了三嗪的低激发态的电子结构。在平衡的基态几何结构和阳离子的几何结构处计算激发能。对所选激发态进行了完整的几何优化,并对这些态下的Jahn-Teller畸变的幅度进行了量化。对这些状态的电子结构的分析为通过垂直激励的单点计算预测平衡几何的对称性提供了一个简单的方法。简并对和非简并轨道之间的激励所形成的状态形成了一个熟悉的二圆锥形相交点,并且始终借助Jahn-Teller定理而发生了畸变,而简并两对轨道之间的激励所形成的状态却形成了一个更复杂的类似扫视的流形,其特征在于可忽略的Jahn-Teller线性项。我们的分析表明,不管这些四态流形的简并性模式如何,前两个态始终几乎是对称的。扫视相交中势能面的特定形状取决于流形内状态的相对顺序,并讨论了D-3h几何形状周围两种相交类型的不同拓扑。将激发态的预测对称性与所选电子态的优化结构进行比较。

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