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O(3P) + CO(X(1)Σ+) → CO2(X̃(1)Σg(+)) 自旋禁阻反应的非玻恩-奥本海默分子动力学。

Non-Born-Oppenheimer molecular dynamics of the spin-forbidden reaction O(3P) + CO(X(1)Σ+) → CO2(X̃(1)Σg(+)).

机构信息

Combustion Research Facility, Sandia National Laboratories, Livermore, California 94551, USA.

出版信息

J Chem Phys. 2013 Oct 21;139(15):154313. doi: 10.1063/1.4825204.

Abstract

The lowest-energy singlet (1 (1)A') and two lowest-energy triplet (1 (3)A' and 1 (3)A") electronic states of CO2 are characterized using dynamically weighted multireference configuration interaction (dw-MRCI+Q) electronic structure theory calculations extrapolated to the complete basis set (CBS) limit. Global analytic representations of the dw-MRCI+Q∕CBS singlet and triplet surfaces and of their CASSCF∕aug-cc-pVQZ spin-orbit coupling surfaces are obtained via the interpolated moving least squares (IMLS) semiautomated surface fitting method. The spin-forbidden kinetics of the title reaction is calculated using the coupled IMLS surfaces and coherent switches with decay of mixing non-Born-Oppenheimer molecular dynamics. The calculated spin-forbidden association rate coefficient (corresponding to the high pressure limit of the rate coefficient) is 7-35 times larger at 1000-5000 K than the rate coefficient used in many detailed chemical models of combustion. A dynamical analysis of the multistate trajectories is presented. The trajectory calculations reveal direct (nonstatistical) and indirect (statistical) spin-forbidden reaction mechanisms and may be used to test the suitability of transition-state-theory-like statistical methods for spin-forbidden kinetics. Specifically, we consider the appropriateness of the "double passage" approximation, of assuming statistical distributions of seam crossings, and of applications of the unified statistical model for spin-forbidden reactions.

摘要

使用动态加权多参考组态相互作用(dw-MRCI+Q)电子结构理论计算,并外推至完全基组(CBS)极限,对 CO2 的最低能量 singlet(1(1)A')和两个最低能量 triplet(1(3)A'和 1(3)A")电子态进行了表征。通过插值移动最小二乘(IMLS)半自动表面拟合方法,获得了 dw-MRCI+Q∕CBS singlet 和 triplet 表面及其 CASSCF∕aug-cc-pVQZ 自旋轨道耦合表面的全局解析表示。使用耦合的 IMLS 表面和混合非 Born-Oppenheimer 分子动力学的相干开关,计算了标题反应的自旋禁戒动力学。计算得到的自旋禁戒缔合速率系数(对应于速率系数的高压极限)在 1000-5000 K 时比许多燃烧详细化学模型中使用的速率系数大 7-35 倍。给出了多态轨迹的动力学分析。轨迹计算揭示了直接(非统计)和间接(统计)自旋禁戒反应机制,并可用于测试过渡态理论类似的统计方法对自旋禁戒动力学的适用性。具体而言,我们考虑了“双通道”近似的适当性、缝交叉的统计分布的假设以及自旋禁戒反应的统一统计模型的应用。

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