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二异丙基氨基锂介导的芳基氨基甲酸酯的邻位锂化和阴离子弗里斯重排:聚集体和混合聚集体的作用

Lithium diisopropylamide-mediated ortholithiation and anionic fries rearrangement of aryl carbamates: role of aggregates and mixed aggregates.

作者信息

Singh Kanwal Jit, Collum David B

机构信息

Department of Chemistry and Chemical Biology, Baker Laboratory, Cornell University, Ithaca, New York 14853-1301, USA.

出版信息

J Am Chem Soc. 2006 Oct 25;128(42):13753-60. doi: 10.1021/ja064655x.

Abstract

Structural and mechanistic studies of the lithium diisopropylamide (LDA)-mediated anionic Fries rearrangements of aryl carbamates are described. Substituents at the meta position of the arene (H, OMe, F) and the dialkylamino moiety of the carbamate (Me(2)N, Et(2)N, and i-Pr(2)N) markedly influence the relative rates of ortholithiation and subsequent Fries rearrangement. Structural studies using (6)Li and (15)N NMR spectroscopies on samples derived from [(6)Li,(15)N]LDA reveal an LDA dimer, LDA dimer-arene complexes, an aryllithium monomer, LDA-aryllithium mixed dimers, an LDA-lithium phenolate mixed dimer, and homoaggregated lithium phenolates. The highly insoluble phenolate was characterized as a dimer by X-ray crystallography. Rate studies show monomer- and dimer-based ortholithiations as well as monomer- and mixed dimer-based Fries rearrangements. Density functional theory computational studies probe experimentally elusive structural and mechanistic details.

摘要

本文描述了二异丙基氨基锂(LDA)介导的芳基氨基甲酸酯阴离子弗里斯重排的结构和机理研究。芳烃间位的取代基(H、OMe、F)以及氨基甲酸酯的二烷基氨基部分(Me₂N、Et₂N和i-Pr₂N)对邻位锂化和随后的弗里斯重排的相对速率有显著影响。使用⁶Li和¹⁵N NMR光谱对源自[(⁶Li,¹⁵N]LDA的样品进行的结构研究揭示了一种LDA二聚体、LDA二聚体-芳烃络合物、一种芳基锂单体、LDA-芳基锂混合二聚体、一种LDA-锂酚盐混合二聚体以及均聚的锂酚盐。通过X射线晶体学将高度不溶性的酚盐表征为二聚体。速率研究表明存在基于单体和二聚体的邻位锂化以及基于单体和混合二聚体的弗里斯重排。密度泛函理论计算研究探究了实验难以捉摸的结构和机理细节。

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