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Quantum Chemical Study of the Reaction Mechanism of Ozone and Methane with Fluorine and Chlorine Atoms

机译:臭氧与甲烷与氟和氯原子反应机理的量子化学研究

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Ab initio calculations of the potential energy surface for the F + O_3 and Cl + O_3 reactions have been performed using the G3 and G3MP2 methods, which optimize the geometry configuration of reactants, products, intermediates, and transition states. The results show that fluorine atoms react with ozone as violently as chlorine atoms. At the same time, we have studied the reaction mechanisms of F atoms and Cl atoms with methane. It is found that fluorine atoms prefer to react with methane and chlorine atoms with ozone when there is competition between ozone and methane. Therefore, we can reasonably explain why chlorine atoms play the main role of reactants depleting ozone, while the more active fluorine atoms deplete less ozone.
机译:已经使用G3和G3MP2方法对F + O_3和Cl + O_3反应的势能面进行了从头算计算,该方法优化了反应物,产物,中间体和过渡态的几何构型。结果表明,氟原子与臭氧的反应与氯原子一样剧烈。同时,我们研究了F原子和Cl原子与甲烷的反应机理。发现当臭氧与甲烷之间存在竞争时,氟原子倾向于与甲烷和氯原子与臭氧反应。因此,我们可以合理地解释为什么氯原子在消耗臭氧的反应物中起主要作用,而活性较高的氟原子则消耗较少的臭氧。

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