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Host-guest interactions and their role in enantioselective hydrogenation of alpha-keto esters - An analysis of model systems

机译:主-客体相互作用及其作用拆分的加氢alpha-keto酯——一个分析模型系统

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The interaction between cinchonidine and methyl pyruvate has been proposed as the key step leading to enantiodifferentiation in the enantioselective hydrogenation of alpha -ketoesters, In the present work, we employ ab initio MP2/6-31G(d) and MP2/6-31G(d,p) methods to carry out an analysis of the most relevant kind of interactions operating in representative model systems. These interactions are discussed in terms of orbital superposition and dipolar interaction. When approaching H2CO to NH3 at distances lower than 3.4 Angstrom, orbital superposition is the predominant interaction, while at distances above 3.4 Angstrom, both orbital superposition and dipolar interactions may contribute to stabilization, with a small prevalence of dipolar interactions. The stabilization energy at large distances (above 4.5 Angstrom) is very small (about 0.5 kcal mol(-1)), probably not enough to be responsible for the enantiodifferentiation process. Semiempirical calculations on the parent systems were also unable to reveal any special interaction which could be attributed to the enantiodifferentiation process. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 26]
机译:金鸡纳啶和甲基之间的互动丙酮酸已被建议作为关键的一步导致enantiodifferentiation在拆分加氢α-ketoesters,在目前的工作中,我们采用ab在卷首MP2/6-31G (d)和MP2/6-31G (d, p)方法一种最相关的分析代表模型的交互操作系统。轨道叠加和偶极交互。距离低于3.4埃,轨道叠加是主要的交互,在距离超过3.4埃,两者兼而有之轨道叠加和偶极相互作用可能有助于稳定,小流行的偶极相互作用。稳定能源远距离(上图4.5埃)非常小(约0.5千卡摩尔(1)),可能不够负责enantiodifferentiation过程。半经验计算父系统也不能透露任何特别的东西吗这可能归因于交互enantiodifferentiation过程。科学帐面价值保留所有权利。26]

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