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Theoretical study of the absorption and nonradiative deactivation of 1-nitronaphthalene in the low-lying singlet and triplet excited states including methanol and ethanol solvent effects

机译:1-硝基萘在低态单重态和三重态激发态的吸收和非辐射失活的理论研究,包括甲醇和乙醇溶剂的作用

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摘要

The photophysics of the 1-nitronaphthalene molecular system, after the absorption transition to the first singlet excited state, is theoretically studied for investigating the ultrafast multiplicity change to the triplet manifold. The consecutive transient absorption spectra experimentally observed in this molecular system are also studied. To identify the electronic states involved in the nonradiative decay, the minimum energy path of the first singlet excited state is obtained using the complete active space self-consistent fieldconfigurational second-order perturbation approach. A near degeneracy region was found between the first singlet and the second triplet excited states with large spin-orbit coupling between them. The intersystem crossing rate was also evaluated. To support the proposed deactivation model the transient absorption spectra observed in the experiments were also considered. For this, computer simulations using sequential quantum mechanic-molecular mechanic methodology was used to consider the solvent effect in the ground and excited states for proper comparison with the experimental results. The absorption transitions from the second triplet excited state in the relaxed geometry permit to describe the transient absorption band experimentally observed around 200 fs after the absorption transition. This indicates that the T _2 electronic state is populated through the intersystem crossing presented here. The two transient absorption bands experimentally observed between 2 and 45 ps after the absorption transition are described here as the T _1→ T _3 and T _1→T _5 transitions, supporting that the intermediate triplet state (T _2) decays by internal conversion to T _1.
机译:理论上研究了1-硝基萘分子系统的光物理性质,其吸收跃迁到第一个单重态激发态之后,研究了三重态流形的超快多重性变化。还研究了在该分子系统中实验观察到的连续瞬态吸收光谱。为了识别非辐射衰变中涉及的电子状态,使用完整的有源空间自洽场配置二阶摄动方法获得了第一单重态激发态的最小能量路径。在第一单重态和第二三重态激发态之间发现了一个接近简并的区域,它们之间有较大的自旋轨道耦合。还评估了系统间穿越率。为了支持提出的失活模型,还考虑了实验中观察到的瞬态吸收光谱。为此,使用顺序量子力学-分子力学方法的计算机模拟被用于考虑基态和激发态的溶剂效应,以便与实验结果进行适当比较。在松弛的几何形状中,从第二个三重态激发态的吸收跃迁允许描述吸收跃迁后约200 fs实验观察到的瞬态吸收带。这表明T _2电子状态是通过此处呈现的系统间交叉填充的。在吸收跃迁后2到45 ps之间实验观察到的两个瞬态吸收带在此处描述为T _1→T _3和T _1→T _5跃迁,支持中间三重态(T _2)通过内部转换为T衰减_1。

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