Department of Chemistry, University of Copenhagen, Copenhagen O, Denmark.
Phys Chem Chem Phys. 2013 Apr 14;15(14):5140-50. doi: 10.1039/c3cp44034f.
The gas phase reaction between methane sulfonic acid (CH3SO3H; MSA) and the hydroxyl radical (HO), without and with a water molecule, was investigated with DFT-B3LYP and CCSD(T)-F12 methods. For the bare reaction we have found two reaction mechanisms, involving proton coupled electron transfer and hydrogen atom transfer processes that produce CH3SO3 and H2O. We also found a third reaction mechanism involving the double proton transfer process, where the products and reactants are identical. The computed rate constant for the oxidation process is 8.3 × 10(-15) cm(3) s(-1) molecule(-1). CH3SO3H forms two very stable complexes with water with computed binding energies of about 10 kcal mol(-1). The presence of a single water molecule makes the reaction between CH3SO3H and HO much more complex, introducing a new reaction that consists in the interchange of H2O between HO and CH3SO3H. Our kinetic calculations show that 99.5% of the reaction involves this interchange of the water molecule and, consequently, water vapor does not play any role in the oxidation reaction of methane sulfonic acid by the hydroxyl radical.
甲烷磺酸(CH3SO3H;MSA)与羟基自由基(HO)在气相中的反应,有无水分子参与,均用 DFT-B3LYP 和 CCSD(T)-F12 方法进行了研究。对于裸反应,我们发现了两种反应机制,涉及质子耦合电子转移和氢原子转移过程,生成 CH3SO3 和 H2O。我们还发现了第三种反应机制,涉及双质子转移过程,其中产物和反应物相同。氧化过程的计算速率常数为 8.3×10(-15)cm(3)s(-1)molecule(-1)。MSA 与水形成了两个非常稳定的复合物,结合能约为 10 kcal mol(-1)。单个水分子的存在使 CH3SO3H 和 HO 之间的反应变得更加复杂,引入了一种新的反应,即 HO 和 CH3SO3H 之间的 H2O 交换。我们的动力学计算表明,99.5%的反应涉及水分子的这种交换,因此水蒸气在甲烷磺酸被羟基自由基氧化的反应中不起任何作用。