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Isotope effect on the J-T distortion of partially deuteriated benzene cation radicals:an experimental EPR and theoretical DFT study

机译:同位素对部分氘代苯阳离子自由基J-T畸变的影响:实验EPR和理论DFT研究

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摘要

D/H isotope-substitution effects on the Jahn-Teller (J-T)distortion of cation radicals of partially deuteriated benzenes;benzene-d_5,benzene-1,2,4,5-d_4,benzene-l,4-d2,and benzene-1,3,5-d_3,were investigated by electron spin resonance (EPR)using frozen haloalkanes and porous silicas as matrices.Quantum-chemical calculations using the density functional theory (DFT)method were also performed.The way of distortion of the cation radicals of selectively deuteriated benzenes is unique relative to the deuteriation sites in all the matrices used.The ground state of the distorted cation is ~2B_(2g)of D_(2h)symmetry,regardless of the way of isotope labeling.The undeuteriated C-H bonds occupy the specific positions in the distorted form where the higher spin density appears,in agreement with the result of theoretical calculations.The role of the matrix to stabilize the distorted form is also discussed.
机译:D / H同位素取代对部分氘代苯;苯-d_5,苯-1,2、4、5-d_4,苯-1、4-d2和苯的阳离子的Jahn-Teller(JT)畸变的影响-1,3,5-d_3以冷冻的卤代烷烃和多孔二氧化硅为基质,通过电子自旋共振(EPR)进行了研究。还使用密度泛函理论(DFT)方法进行了定量化学计算。相对于所有使用的氘代氘代位点而言,选择性氘代苯的阳离子自由基是唯一的。无论同位素标记的方式如何,畸变阳离子的基态均为D_(2h)对称性的〜2B_(2g)对称性。与理论计算结果一致,键在扭曲形式中出现较高自旋密度的特定位置,与理论计算结果一致。还讨论了基质对扭曲形式的稳定作用。

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