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Density functional theory study of the oxidation reaction in the gas and aqueous phase of allyl methyl disulfide with hydroxyl radical

机译:羟基自由基烯丙基甲基二硫化物气体和水相中氧化反应的密度函数理论研究

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摘要

An in silico analysis of the oxidation mechanism of allyl methyl disulfide (AMDS) by hydroxyl radical was achieved at DFT level using B3LYP, CAM-B3LYP, M06-2X, and BMK functionals and 6-311++G(3df,2p) triple-zeta basis set. The calculations were carried out in both gas and aqueous phases using the SMD model (density-based solvation model). Three potential reactions were proposed according to results of Fukui function; in reactions 1 and 2, the hydroxyl radical attacks the sulfur atom breaking the disulfide bond and the reaction 3 is a hydrogen atom subtraction reaction. The respective structures of transition states (TSs) were found. Intrinsic reaction coordinate (IRC) calculations were performed for the three reactions, and their rates and equilibrium constants were calculated. When the solvent effect is taken into account, the four DFT functionals employed designate R3 (a subtraction reaction) as the fastest reaction. Thus, we elucidated the thermodynamic and kinetic feasibility of the proposed oxidation reactions.
机译:在DFT水平下,使用BFFP,CAM-B3LYP,M06-2X和BMK功能和6-311 ++ G(3DF,2P)三联,在DFT水平上进行羟基甲基二硫化物(AMDS)的氧化机制的氧化甲基二硫化物(AMDS)的氧化机理。 -zeta基础集。使用SMD模型(基于密度的溶剂化模型),在气体和水相中进行计算。根据福井函数的结果提出了三种潜在的反应;在反应1和2中,羟基自由基攻击破碎二硫键的硫原子,反应3是氢原子减法反应。发现过渡态(TSS)的各个结构。对三种反应进行内在反应坐标(IRC)计算,并计算它们的速率和平衡常数。当考虑溶剂效应时,使用的四个DFT官能团将R3(减法反应)指定为最快的反应。因此,我们阐明了所提出的氧化反应的热力学和动力学可行性。

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