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Lithium Hexamethyldisilazide Mediated Enolization of Highly Substituted Aryl Ketones: Structural and Mechanistic Basis of the E/Z Selectivities

机译:锂六甲基二硅叠氮化物介导的高取代芳基酮的烯醇化:E / Z选择性的结构和机理基础

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摘要

Enolizations of highly substituted acyclic ketones used in the syntheses of tetrasubstituted olefin-based anticancer agents are described. Lithium hexamethyldisilazide (LiHMDS)-mediated enolizations are moderately Z-selective in neat tetrahydrofuran (THF) E-selective in 2.0 M THF/hexane. The results of NMR spectroscopy show the resulting enolates to be statistically distributed ensembles of E,E-, E,Z-, and Z,Z-enolate dimers with subunits that reflect the selectivities. The results of rate studies trace the preference for E and Z isomers to tetrasolvated- and pentasolvated-monomer-based transition structures, respectively. Enolization using LiHMDS in N,N-dimethylethylamine or triethylamine in toluene affords a 65:1 mixture of LiHMDS–lithium enolate mixed dimers containing E and Z isomers, respectively. Spectroscopic studies show that condition-dependent complexation of ketone to LiHMDS occurs in trialkylamine/toluene. Rate study findings attribute the high selectivity exclusively to monosolvated-dimer-based transition structures.
机译:描述了在基于四取代烯烃的抗癌剂的合成中使用的高度取代的无环酮的烯醇化。六甲基二硅叠氮化锂(LiHMDS)介导的烯醇化反应在2.0 M THF /己烷中对纯四氢呋喃(THF)E选择性进行Z选择性。 NMR光谱的结果表明,所得的烯醇酯是统计上分布的E,E-,E,Z-和Z,Z-烯醇二聚体的集合体,其具有反映选择性的亚基。速率研究的结果分别追踪了对E和Z异构体的偏好,分别基于四溶剂化和五溶剂化的单体过渡结构。使用LiHMDS在N,N-二甲基乙胺或甲苯中的三乙胺进行烯化,可分别得到65:1的LiHMDS-烯醇锂混合的二聚体,分别包含E和Z异构体。光谱研究表明,酮与LiHMDS的条件依赖性络合发生在三烷基胺/甲苯中。速率研究发现,高选择性仅归因于基于单溶剂化二聚体的过渡结构。

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