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Chiral diamine-silver(I)-alkene complexes: A quantum chemical and NMR study

机译:手性二胺 - 银(I) - 烯烃配合物:量子化学和NmR研究

摘要

The ability of chiral diamine silver complexes to bind chiral and prochiral alkenes has been analyzed in detail. The stereoselectivity in binding of alkenes to a chiral ethanediamine silver complex has been investigated by NMR. The low-energy conformations of several small model complexes have been explored by DFT methods. By successive substitution of the computational model complexes, it has been possible to elucidate the role of each amine substituent in achieving successful discrimination of alkenes. The conformational space has been fully explored using small model systems, allowing an unbiased calculation of stereoselectivities that match well the experimental results. For a chiral allylic alcohol substrate, the correct stereoselectivity was obtained only when the structures were optimized with a continuum representation of the solvent. The discrepancy between gas phase and solution data is found to result from a competition between internal stabilization and solvation of the OH group of the substrate.
机译:已经详细分析了手性二胺银配合物结合手性和前手性烯烃的能力。已经通过NMR研究了烯烃与手性乙二胺银络合物结合中的立体选择性。 DFT方法已经探索了几种小模型复合物的低能构象。通过连续替换计算模型络合物,可以阐明每个胺取代基在成功识别烯烃中的作用。使用小型模型系统已充分探索了构象空间,可以无偏地计算立体选择性,从而与实验结果相匹配。对于手性烯丙醇底物,只有当以连续的溶剂形式对结构进行优化时,才能获得正确的立体选择性。发现气相和溶液数据之间的差异是由于内部稳定性和底物的OH基团的溶剂化之间的竞争所致。

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