化学
烯丙基重排
克莱森重排
烯烃纤维
烯醇
立体选择性
酮-烯醇互变异构
密度泛函理论
计算化学
立体化学
有机化学
催化作用
互变异构体
作者
Tyler J. Fulton,Alexander Q. Cusumano,Eric J. Alexy,Yun E. Du,Haiming Zhang,K. N. Houk,Brian M. Stoltz
摘要
A dual experimental/theoretical investigation of the Ireland-Claisen rearrangement of tetrasubstituted α-phthalimido ester enolates to afford α-tetrasubstituted, β-trisubstituted α-amino acids (generally >20:1 dr) is described. For trans allylic olefins, the Z- and E-enol ethers proceed through chair and boat transition states, respectively. For cis allylic olefins, the trend is reversed. As a result, the diastereochemical outcome of the reaction is preserved regardless of the geometry of the enolate or the accompanying allylic olefin. We term this unique convergence of all possible olefin isomers global diastereoconvergence. This reaction manifold circumvents limitations in present-day technologies for the stereoselective enolization of α,α-disubstituted allyl esters. Density functional theory paired with state-of-the-art local coupled-cluster theory (DLPNO-CCSD(T)) was employed for the accurate determination of quantum mechanical energies.
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