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Ab Initio Study on the Thermal Decomposition of CH3CF2O Radical

机译:CH 3 CF 2 O自由基热分解的从头算研究

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The decomposition reaction mechanism of CH3CF2O radical formed from hydroflurocarbon, CH3CHF2 (HFC- 152a) in the atmosphere has been investigated using ab-initio quantum mechanical methods. The geometries of the reactant, products and transition states involved in the decomposition pathways have been optimized and characterized at DFT-B3LYP and MP2 levels of theories using 6-311++G(d,p) basis set. Calculations have been carried out to observe the effect of basis sets on the optimized geometries of species involved. Single point energy calculations have been performed at QCISD(T) and CCSD(T) level of theories. Out of the two prominent decomposition channels considered viz., C-C bond scission and F-elimination, C-C bond scission is found to be the dominant path involving a barrier height of 12.3 kcal/mol whereas the F-elimination path involves that of a 28.0 kcal/mol. Using transition-state theory, rate constant for the most dominant decomposition pathway viz., C-C bond scission is calculated at 298 K and found to be 1.3 】 104 s-1. Transition states are searched on the potential energy surfaces involving both decomposition channels and each of the transition states are characterized. The existence of transition states on the corresponding potential energy surface are ascertained by performing Intrinsic Reaction Coordinate (IRC) calculation.
机译:由氢氟烃CH 3 CHF 2 (HFC-形成的CH 3 CF 2 O自由基的分解反应机理152a)在大气中已使用 ab-initio 量子力学方法进行了研究。分解路径中涉及的反应物,产物和过渡态的几何结构已使用6-311 ++ G(d,p)基集在DFT-B3LYP和MP2理论水平上进行了优化和表征。已经进行了计算以观察基集对所涉及物种的最佳几何形状的影响。在QCISD(T)和CCSD(T)的理论水平上已经执行了单点能量计算。在被认为是CC键断裂和F消除的两个重要分解通道中,CC键断裂是主要的路径,其势垒高度为12.3 kcal / mol,而F消除路径的阻挡路径为28.0 kcal。 /摩尔利用过渡态理论,最主要分解途径的速率常数即CC键断裂在298 K处计算,结果为1.3} 10 4 s -1 。在涉及两个分解通道的势能表面上搜索过渡态,并对每个过渡态进行表征。通过执行本征反应坐标(IRC)计算,可以确定相应势能表面上过渡态的存在。

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