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大气反应CH3O2 + NO的量子力学研究

Quantum mechanical investigation of the atmospheric reaction CH3O2 + NO.

作者信息

Lesar Antonija, Hodoscek Milan, Drougas Evangelos, Kosmas Agnie M

机构信息

Department of Physical and Organic Chemistry, Insitute Jozef Stefan, Ljubljana, Slovenia.

出版信息

J Phys Chem A. 2006 Jun 29;110(25):7898-903. doi: 10.1021/jp0614244.

Abstract

The important stationary points on the potential energy surface of the reaction CH(3)O(2) + NO have been investigated using ab initio and density functional theory techniques. The optimizations were carried out at the B3LYP/6-311++G(d,p) and MP2/6-311++G(d,p) levels of theory while the energetics have been refined using the G2MP2, G3//B3LYP, and CCSD(T) methodologies. The calculations allow the proper characterization of the transition state barriers that determine the fate of the nascent association conformeric minima of methyl peroxynitrite. The main products, CH(3)O + NO(2), are formed through either rearrangement of the trans-conformer to methyl nitrate and its subsequent dissociation or via the breaking of the peroxy bond of the cis-conformer to CH(3)O + NO(2) radical pair. The important consequences of the proposed mechanism are (a) the allowance on energetic grounds for nitrate formation parallel to radical propagation under favorable external conditions and (b) the confirmation of the conformational preference of the homolytic cleavage of the peroxy bond, discussed in previous literature.

摘要

利用从头算和密度泛函理论技术研究了反应CH(3)O(2) + NO势能面上的重要驻点。在B3LYP/6 - 311++G(d,p)和MP2/6 - 311++G(d,p)理论水平下进行了优化,同时使用G2MP2、G3//B3LYP和CCSD(T)方法对能量进行了细化。这些计算能够恰当地表征决定新生的甲基过氧亚硝酸酯缔合构象极小值命运的过渡态势垒。主要产物CH(3)O + NO(2)的形成途径有两种:一是反式构象体重排为硝酸甲酯并随后解离;二是顺式构象体的过氧键断裂形成CH(3)O + NO(2)自由基对。所提出机制的重要结果是:(a) 在有利的外部条件下,从能量角度允许平行于自由基传播形成硝酸盐;(b) 证实了先前文献中讨论的过氧键均裂的构象偏好。

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