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首页> 外文期刊>The Journal of Chemical Physics >Vibronic coupling in benzene cation and anion:Vibronic coupling and frontier electron density in Jahn-Teller molecules
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Vibronic coupling in benzene cation and anion:Vibronic coupling and frontier electron density in Jahn-Teller molecules

机译:苯阳离子和阴离子中的振动耦合:Jahn-Teller分子中的振动耦合和前沿电子密度

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摘要

Vibronic coupling constants of Jahn-Teller molecules,benzene radical cation and anion,are computed as matrix elements of the electronic part of the vibronic coupling operator using the electronic wave functions calculated by generalized restricted Hartree-Fock and state-averaged complete active space self-consistent-field methods.The calculated vibronic coupling constants for benzene cation agree well with the experimental and theoretical values.Vibronic coupling density analysis,which illustrates the local properties of the coupling,is performed in order to explain the order of magnitude of the coupling constant from view of the electronic and vibrational structures.This analysis reveals that the couplings of the e_(2g)(2)and e_(2g)(3)modes in which the large displacements locate on C-C bonds are strong in the cation.On the other hand,they are greatly weakened in the anion because of the decrease of electron density in the region of the C-C bonds,which originates from the antibonding nature of the singly occupied molecular orbital of the anion.However,the difference of the electronic structure has a little influence on the vibronic coupling of the e_(2g)(4)mode.These results indicate that the vibronic coupling depends not only on the direction of the nuclear displacement but also on the frontier electron density.
机译:利用由广义受限Hartree-Fock和状态平均的完全活动空间自相关函数计算的电子波函数,将Jahn-Teller分子,苯自由基阳离子和阴离子的电子耦合常数计算为电子耦合算符电子部分的矩阵元素。计算得到的苯阳离子的振动偶合常数与实验值和理论值吻合良好。进行了振动偶合密度分析,以说明偶合的局部性质,以解释偶合常数的数量级。从电子和振动结构的角度来看。此分析表明,大位移位于CC键上的e_(2g)(2)和e_(2g)(3)模式的耦合在阳离子中很强。另一方面,由于CC键区域中电子密度的降低,它们在阴离子中被大大削弱了,这是由于反键引起的阴离子的单个占据的分子轨道的性质。但是,电子结构的差异对e_(2g)(4)模式的电子耦合几乎没有影响。这些结果表明,电子耦合不仅取决于电子。核位移的方向还取决于边界电子密度。

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