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Theoretical study on the atmospheric reaction of CH3SH with O-2

机译:o-2 CH3sh大气反应的理论研究

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A detailed study on the reaction mechanism of CH3SH with O-2 was carried out using quantum chemical methods. Eleven singlet pathways and four triplet pathways were found based on CCSD(T)//M06-2x calculations. The nature of chemical bonding evolution was also studied using electron localization function and atoms in molecules analysis. Moreover, reaction rate constants were calculated between 200 and 800K at the level of the transition state theory by Wigner tunneling correction. The results suggest that the main products should be CH2SO, H2O, CH3OH, SO, CH4, and SO2, respectively, basically coinciding with the experimental results. The corresponding feasible pathways are channels R7, R8, and R9, respectively, with an effective energy barrier of 56.21kJ/mol. Obviously, given the low energy barrier similar to the main paths mentioned above, the products CH2SH and HO2 should assume a definite proportion in all possible products, although such species were not yet detected in experiment.
机译:用量子化学方法对CH3SH与O-2反应机理进行详细研究。 基于CCSD(T)// M06-2X计算,发现了11个单态途径和四个三重态途径。 还使用电子定位功能和分子分析中的原子研究化学粘合演化的性质。 此外,通过Wigner隧道校正,在过渡状态理论的水平下计算反应速率常数。 结果表明,主要产品应分别是CH2SO,H 2 O,CH 3 OH,SO,CH 4和SO2,基本上与实验结果相吻合。 相应的可行途径分别是通道R7,R8和R9,其具有56.21kJ / mol的有效能量屏障。 显然,考虑到与上述主路径类似的低能量屏障,产品CH2SH和HO2应在所有可能产品中呈现明确的比例,尽管在实验中尚未检测到这种物种。

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