首页> 外文期刊>Journal of the American Chemical Society >AN AUTOMATED PROCEDURE FOR SIMULATING CHEMICAL REACTIONS IN SOLUTION - APPLICATION TO THE DECARBOXYLATION OF 3-CARBOXYBENZISOXAZOLE IN WATER [Review]
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AN AUTOMATED PROCEDURE FOR SIMULATING CHEMICAL REACTIONS IN SOLUTION - APPLICATION TO THE DECARBOXYLATION OF 3-CARBOXYBENZISOXAZOLE IN WATER [Review]

机译:一种模拟溶液中化学反应的自动化程序-在水中3-羧基苯并异恶唑的脱羧反应中的应用[综述]

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A combined Monte Carlo quantum mechanical and molecular mechanical (QM/MM) simulation method is described for the investigation of the solvent effects on chemical reactions, In the present approach, ab initio molecular orbital calculations are first used to locate the transition state, from which the reaction path is determined by using Gaussian 90. Then, free energy changes between adjacent structures generated along this intrinsic reaction path are evaluated via statistical perturbation theory using the combined QM/MM-AM1/TIP3P potential. Since empirical parametrization of the reaction system is not needed in these calculations, the method presented here is essentially an automated procedure for simulating reactions in solution, which may be conveniently used by organic chemists. We have employed the procedure to examine the decarboxylation of 3-carboxybenzisoxazole in aqueous solution. The predicted free energy of activation is 26.1 +/- 0.3 kcal/mol, in excellent agreement with the experimental value of 26.3 kcal/mol. Analyses of the contributing factors in solute-solvent interaction suggest that the aqueous solvent effect is primarily due to the difference in the intrinsic (in vacuo) charge distributions between the reactant and transition state. Solvent polarization contributes significantly to the solute-solvent interaction; however, the nature of the electronic polarization of the reactant and the transition state is markedly different. [References: 107]
机译:描述了一种组合的蒙特卡洛量子力学和分子力学(QM / MM)模拟方法,用于研究溶剂对化学反应的影响。在本方法中,首先使用从头算分子轨道计算来确定过渡态,通过使用高斯90确定反应路径。然后,使用组合的QM / MM-AM1 / TIP3P电势,通过统计扰动理论评估沿该固有反应路径生成的相邻结构之间的自由能变化。由于在这些计算中不需要反应系统的经验参数化,因此此处介绍的方法本质上是模拟溶液中反应的自动化程序,有机化学家可以方便地使用它。我们已经使用该程序来检查3-羧基苯并恶唑在水溶液中的脱羧作用。预测的活化自由能为26.1 +/- 0.3 kcal / mol,与26.3 kcal / mol的实验值非常吻合。溶质与溶剂相互作用的影响因素分析表明,水性溶剂的作用主要是由于反应物和过渡态之间固有的(真空)电荷分布不同。溶剂极化极大地促进了溶质与溶剂之间的相互作用。然而,反应物的电子极化的性质和过渡态明显不同。 [参考:107]

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