首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Unimolecular HO2 Loss from Peroxy Radicals Formed in Autoxidation Is Unlikely under Atmospheric Conditions
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Unimolecular HO2 Loss from Peroxy Radicals Formed in Autoxidation Is Unlikely under Atmospheric Conditions

机译:自氧化形成过氧化物自由基引起的单分子HO2损失在大气条件下不太可能

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摘要

A concerted HO2 loss reaction from a peroxy radical (RO2), formed from the addition of O-2 to an alkyl radical, has been proposed as a mechanism to form closed-shell products in the atmospheric oxidation of organic molecules. We investigate this reaction computationally with four progressively oxidized radicals. Potential energy surfaces of the O-2 addition and HO2 loss reactions were calculated at ROHF-RCCSD (T)-F12a/VDZ-F12//omega B97xD/aug-cc-pVTZ level of theory and the master equation solver for multienergy well reactions (MESMER) was used to calculate Bartis-Widom phenomenological rate coefficients. The rate coefficients were also compared with the unimolecular rate coefficients of the HO2 loss reaction calculated with transition state theory at atmospheric temperature and pressure. On the basis of our calculations, the unimolecular concerted HO2 loss is unlikely to be a major pathway in the formation of highly oxidized closed shell molecules in the atmosphere.
机译:已经提出了由过氧自由基(RO2)引起的协调的HO2损失反应,该过氧化自由基是通过将O-2加至烷基而形成的,是在有机分子的大气氧化过程中形成闭壳产物的机制。我们用四个逐步氧化的自由基对这一反应进行了计算研究。在ROHF-RCCSD(T)-F12a / VDZ-F12 // omega B97xD / aug-cc-pVTZ的理论水平和用于多能阱反应的主方程求解器下计算O-2加成和HO2损失反应的势能面(MESMER)用于计算Bartis-Widom现象学速率系数。还将速率系数与通过过渡态理论在大气温度和压力下计算出的HO2损失反应的单分子速率系数进行了比较。根据我们的计算,单分子协调的HO2损失不太可能是大气中高氧化性封闭壳分子形成的主要途径。

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