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首页> 外文期刊>Theoretical chemistry accounts >Theoretical study of the S(N)2 reaction of Cl-(H2O)+CH3Cl using our own N-layered integrated molecular orbital and molecular mechanics polarizable continuum model method (ONIOM-PCM)
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Theoretical study of the S(N)2 reaction of Cl-(H2O)+CH3Cl using our own N-layered integrated molecular orbital and molecular mechanics polarizable continuum model method (ONIOM-PCM)

机译:使用我们自己的N层积分分子轨道和分子力学可极化连续体模型方法(ONIOM-PCM)对Cl-(H2O)+ CH3Cl的S(N)2反应进行理论研究

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摘要

The effects of solvation in the S(N)2 reaction Cl-(H2O)+CH3Cl were investigated using our own N-layered integrated molecular orbital and molecular mechanics (ONIOM) polarizable continuum model (PCM) method [Vreven T, Mennucci B, da Silva CO, Morokuma K, Tomasi J (2001) J Chem Phys 115:62-72], which surrounds the microsolvated ONIOM system with a polarizable continuum. The microsolvating water molecule tends to stay in the vicinity of the original chloride ion. In the ONIOM calculations, Cl-+CH3Cl was considered as the "model" system and was handled with the "high-level" method, while the explicit water molecule in the microsolvated complex was treated at the "low-level". The molecular orbital (MO) and ONIOM(MO:MO) calculations allow us to assess the errors introduced by the ONIOM extrapolation, as well as the effects of microsolvation on the potential-energy surfaces. We find that ONIOM[B3LYP/6-31+G(d,p):HF/6-31+G(d,p)] and ONIOM[B3LYP/6-31+G(d,p):HF/6-31+G(d,p)]-PCM methods are good approximations to the target B3LYP/6-31+G(d,p) and B3LYP/6-31+G(d,p)-PCM methods. In addition, several approximate (computationally less expensive) schemes in the ONIOM-PCM method have been compared to the exact scheme, and all are shown to perform well. [References: 31]
机译:使用我们自己的N层集成分子轨道和分子力学(ONIOM)可极化连续体模型(PCM)方法[Vreven T,Mennucci B, da Silva CO,Morokuma K,Tomasi J(2001)J Chem Phys 115:62-72],其围绕着微溶剂化的ONIOM系统,并带有可极化的连续体。微溶剂化的水分子倾向于停留在原始氯离子附近。在ONIOM计算中,将Cl- + CH3Cl视为“模型”系统,并使用“高级”方法进行处理,而将微溶剂化配合物中的显式水分子处理为“低级”。分子轨道(MO)和ONIOM(MO:MO)计算使我们能够评估ONIOM外推法引入的误差以及微溶剂化对势能表面的影响。我们发现ONIOM [B3LYP / 6-31 + G(d,p):HF / 6-31 + G(d,p)]和ONIOM [B3LYP / 6-31 + G(d,p):HF / 6 -31 + G(d,p)]-PCM方法非常接近目标B3LYP / 6-31 + G(d,p)和B3LYP / 6-31 + G(d,p)-PCM方法。此外,已经将ONIOM-PCM方法中的几种近似(计算上较便宜)方案与精确方案进行了比较,所有方案均显示出良好的性能。 [参考:31]

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