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在具有三条漫游路径的四个单重态势能面上,硝基甲烷光解离和异构化的从头算反应路径。

Ab initio reaction pathways for photodissociation and isomerization of nitromethane on four singlet potential energy surfaces with three roaming paths.

作者信息

Isegawa Miho, Liu Fengyi, Maeda Satoshi, Morokuma Keiji

机构信息

Fukui Institute for Fundamental Chemistry, Kyoto University, 34-4 Takano Nishihiraki-cho, Sakyo, Kyoto 606-8103, Japan.

Department of Chemistry, Faculty of Science, Hokkaido University, Sapporo 060-0810, Japan.

出版信息

J Chem Phys. 2014 Jun 28;140(24):244310. doi: 10.1063/1.4883916.

Abstract

Photodissociation pathways of nitromethane following π → π(*) electronic excitation are reported. The potential energy surfaces for four lowest singlet states are explored, and structures of many intermediates, dissociation limits, transition states, and minimum energy conical intersections were determined using the automated searching algorism called the global reaction route mapping strategy. Geometries are finally optimized at CASSCF(14e,11o) level and energies are computed at CAS(14o,11e)PT2 level. The calculated preferable pathways and important products qualitatively explain experimental observations. The major photodissociation product CH3 and NO2 ((2)B2) is formed by direct dissociation from the S1 state. Important pathways involving S1 and S0 states for production of various dissociation products CH3NO + O ((1)D), CH3O(X(2)E) + NO (X(2)Π), CH2NO + OH, and CH2O + HNO, as well as various isomerization pathways have been identified. Three roaming processes also have been identified: the O atom roaming in O dissociation from CH3NO2, the OH radical roaming in OH dissociation from CH2N(O)(OH), and the NO roaming in NO dissociation from CH3ONO.

摘要

报道了π→π(*)电子激发后硝基甲烷的光解离途径。研究了四个最低单重态的势能面,并使用称为全局反应路径映射策略的自动搜索算法确定了许多中间体的结构、解离极限、过渡态和最小能量锥形交叉点。最终在CASSCF(14e,11o)水平上优化几何结构,并在CAS(14o,11e)PT2水平上计算能量。计算得到的优选途径和重要产物定性地解释了实验观察结果。主要光解离产物CH3和NO2 ((2)B2)由S1态直接解离形成。已经确定了涉及S1和S0态生成各种解离产物CH3NO + O ((1)D)、CH3O(X(2)E) + NO (X(2)Π)、CH2NO + OH和CH2O + HNO的重要途径,以及各种异构化途径。还确定了三个漫游过程:O原子在CH3NO2的O解离中漫游、OH自由基在CH2N(O)(OH)的OH解离中漫游以及NO在CH3ONO的NO解离中漫游。

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