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利用多态多组态二级微扰理论研究 CO2(2+) 二价阳离子的光离解机制。

Photodissociation mechanisms of the CO2(2+) dication studied using multi-state multiconfiguration second-order perturbation theory.

机构信息

School of Chemistry and Chemical Engineering, University of Chinese Academy of Sciences, Yuquan Road 19A, 100049 Beijing, People's Republic of China.

出版信息

J Chem Phys. 2013 Nov 7;139(17):174305. doi: 10.1063/1.4827075.

DOI:10.1063/1.4827075
PMID:24206296
Abstract

Employing the multi-state multiconfiguration second-order perturbation theory (MS-CASPT2) and complete active space self-consistent field (CASSCF) methods, the geometries, relative energies (T(v)') to the ground state (X(3)Σg(-)), adiabatic excited energies, and photodissociation mechanisms and corresponding kinetic energy releases for the lower-lying 14 electronic states of the CO2 (2+) ion are studied. The T(v)' values are calculated at the experimental geometry of the ground state CO2 molecule using MS-CASPT2 method and highly close to the latest threshold photoelectrons coincidence and time-of-flight photoelectron photoelectron coincidence spectrum observations. The O-loss dissociation potential energy curves (PECs) for these 14 states are drawn using MS-CASPT2 partial optimization method at C(∞v) symmetry with one C-O bond length ranging from 1.05 to 8.0 Å. Those 14 states are confirmed to be correlated to the lowest four dissociation limits [CO(+)(X(2)Σ(+)) + O(+)((4)S(u)), CO(+)(A(2)Π) + O(+)((4)S(u)), CO(+)(X(2)Σ(+)) + O(+)((2)D(u)), and CO(+)(X(2)Σ(+)) + O(+)((2)P(u))] by analyzing Coulomb interaction energies, charges, spin densities, and bond lengths for the geometries at the C-O bond length of 8.0 Å. On the basis of these 14 MS-CASPT2 PECs, several state/state pairs are selected to optimize the minimum energy crossing points (MECPs) at the CASSCF level. And then the CASSCF spin-orbit couplings and CASPT2 state/state energies are calculated at these located MECPs. Based on all of the computational results, the photodissociation mechanisms of CO2(2+) are proposed. The relationships between the present theoretical studies and the previous experiments are discussed.

摘要

采用多态多组态二级微扰理论(MS-CASPT2)和完全活性空间自洽场(CASSCF)方法,研究了 CO2(2+)离子的 14 个低电子态的几何形状、与基态(X(3)Σg(-))的相对能量(T(v)')、绝热激发能以及光解机制和相应的动能释放。T(v)'值是在实验基态 CO2 分子几何形状下用 MS-CASPT2 方法计算的,与最新的阈值光电子符合和飞行时间光电子光电子符合谱观察非常接近。使用 MS-CASPT2 部分优化方法在 C(∞v)对称下,用一条 C-O 键长从 1.05 到 8.0 Å 的方式绘制了这些 14 个态的 O 损失解离势能曲线(PEC)。通过分析 8.0 Å 处 C-O 键长的几何形状的库仑相互作用能、电荷、自旋密度和键长,确定了这 14 个态与最低四个解离极限[CO(+)(X(2)Σ(+))+ O(+)((4)S(u))、CO(+)(A(2)Π)+ O(+)((4)S(u))、CO(+)(X(2)Σ(+))+ O(+)((2)D(u))和 CO(+)(X(2)Σ(+))+ O(+)((2)P(u))]有关。基于这些 14 个 MS-CASPT2 PEC,选择了几个态/态对,在 CASSCF 水平下优化最小能量交叉点(MECP)。然后,在这些定位的 MECP 处计算 CASSCF 自旋轨道耦合和 CASPT2 态/态能量。基于所有的计算结果,提出了 CO2(2+)的光解机制。讨论了本理论研究与以往实验之间的关系。

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