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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Computation of accurate activation barriers for methyl-transfer reactions of sulfonium and ammonium salts in aqueous solution
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Computation of accurate activation barriers for methyl-transfer reactions of sulfonium and ammonium salts in aqueous solution

机译:水溶液中sulf盐和铵盐的甲基转移反应的精确活化障碍的计算

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The energetics of methyl-transfer reactions from dimethylammonium, tetramethylammonium, and trimethylsulfonium to dimethylamine were computed with density functional theory, MP2, CBS-QB3, and quantum mechanics/molecular mechanics (QM/MM) Monte Carlo methods. At the CBS-QB3 level, the gas-phase activation enthalpies are computed to be 9.9, 15.3, and 7.9 kcal/mol, respectively. MP2/6-31+G(d,p) activation enthalpies are in best agreement with the CBS-QB3 results. The effects of aqueous solvation on these reactions were studied with polarizable continuum model, generalized Born/surface area (GB/SA), and QM/MM Monte Carlo simulations utilizing free-energy perturbation theory in which the PDDG/PM3 semiempirical Hamiltonian for the QM and explicit TIP4P water molecules in the MM region were used. In the aqueous phase, all of these reactions proceed more slowly when compared to the gas phase, since the charged reactants are stabilized more than the transition structure geometries with delocalized positive charges. In order to obtain the aqueous-phase activation free energies, the gas-phase activation free energies were corrected with the solvation free energies obtained from single-point conductor-like polarizable continuum model and GB/SA calculations for the stationary points along the reaction coordinate.
机译:用密度泛函理论,MP2,CBS-QB3和量子力学/分子力学(QM / MM)蒙特卡洛方法计算了从二甲基铵,四甲基铵和三甲基ulf到二甲基胺的甲基转移反应的能级。在CBS-QB3水平下,气相活化焓分别计算为9.9、15.3和7.9 kcal / mol。 MP2 / 6-31 + G(d,p)激活焓与CBS-QB3结果最一致。使用可极化连续体模型,广义玻恩/表面积(GB / SA)和QM / MM蒙特卡罗模拟,利用自由能扰动理论研究了水合溶剂化对这些反应的影响,其中PDDG / PM3半经验哈密顿量用于QM并在MM区使用了明确的TIP4P水分子。在水相中,与气相相比,所有这些反应的进行都更慢,因为带电荷的反应物比带有离域正电荷的过渡结构几何形状更稳定。为了获得水相活化自由能,通过从单点导体状极化连续体模型和GB / SA计算沿反应坐标的固定点获得的溶剂化自由能来校正气相活化自由能。 。

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