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Kinetics and Quantum Chemical Analysis of Intramolecular SN2 Reactions by Using Metal Salts and Promoted by Crown Ethers:Contact Ion Pair vs.Separated Nucleophile Mechanism

机译:通过使用金属盐对分子内SN2反应的动力学和量子化学分析,并由冠醚促进:接触离子对与分离的亲核试剂机制

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摘要

The efficacy of crown ether as a promoter for intramolecular SN2 reactions is presented,along with the underlying mechanism.The crown ether unit is shown to tremendously accelerate the acetoxylation/cyanation of the crown ether substrate 1 using the metal salts KOAc/KCN.Quantum chemical calculations are presented to examine whether KCN/KOAc reacts as a contact ion-pair(CIP)or as a solvent-separated ionpair(SIP).By comparing the Gibbs free energies of the transition states we predict that the CIP mechanism would be much more favorable than the SIP pathways for SN2 acetoxylation,whereas both routes are comparable for cyanation.Relative stability of pre-reaction complexes of the two alternative routes is also examined.The pre-reaction complex for the CIP pathway is much more stable(G lower by>6.0 kcal/mol)than the SIP counterparts for acetoxylation,indicating that experimental observation of this complex might be a direct evidence of the CIP mechanism of SN2 processes.
机译:提出了冠状醚作为分子内SN2反应的启动子的功效,以及基础机制。冠状醚单元使用金属盐KOAC/KCN.Quntum Chemical.quntum Chemicals crown醚单元可极大地加速乙醚底物1的乙酰氧基/cyanation。 提出了计算以检查KCN/KOAC是作为接触离子对(CIP)反应还是作为溶剂分离的离子台(SIP)。通过比较过渡状态的Gibbs自由能,我们预测CIP机制将更大得多 比SN2乙酰氧基化的SIP途径有利,而这两种途径对于氰化都是可比的。还检查了这两种替代途径的预反应复合物的偏置稳定性。CIP途径的预反应复合物更稳定(G较低(G较低)g降低 > 6.0 kcal/mol)比SIP对应物进行乙酰氧基化,这表明对该复合物的实验观察可能是SN2过程CIP机制的直接证据。

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