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首页> 外文期刊>The Journal of Chemical Physics >The electronic spectrum of the fluoroborane free radical. I. Theoretical calculation of the vibronic energy levels of the ground and first excited electronic states
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The electronic spectrum of the fluoroborane free radical. I. Theoretical calculation of the vibronic energy levels of the ground and first excited electronic states

机译:氟硼烷自由基的电子光谱。一,基态和第一激发电子态的振动能级的理论计算

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摘要

The fluoroborane (HBF) free radical has a large vibronic interaction which splits the orbitally degenerate 2~Ⅱstate in the linear configuration into two separate electronic states, one strongly bent and one linear. The observed vibrational structure of the electronic transition between the Renner– Teller pair of states is very complex. As an aid to understanding the spectrum, the vibronic energy levels of the ground and first excited states have been calculated from high-level ab initio potential energy surfaces using a variational method. The vibrational frequencies and anharmonicities have been derived from these energy levels and the boron and hydrogen isotope shifts have been predicted. Although the ground state energy levels are for the most part well behaved, the excited state levels show substantial Renner–Teller mixing with nearby ground vibrational states. The calculations in the present work have been successfully used in the companion paper to make vibrational assignments of the laser-induced fluorescence spectra of HBF and DBF.
机译:氟硼烷(HBF)自由基具有较大的电子相互作用,将轨道简并的2〜Ⅱ状态以线性构型分为两个独立的电子态,一个为强弯曲态,另一个为线性态。 Renner-Teller状态对之间电子跃迁的观察到的振动结构非常复杂。为了帮助理解光谱,已经使用变分方法从高级从头算势能面计算了基态和第一激发态的振动能级。从这些能级得出了振动频率和非谐性,并预测了硼和氢的同位素位移。尽管基态能级在大多数情况下表现良好,但激发态能级显示出大量的Renner-Teller与附近的基态振动态混合。本研究中的计算已成功地在随行论文中用于对HBF和DBF的激光诱导荧光光谱进行振动分配。

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