Enediolate–Dilithium Amide Mixed Aggregates in the Enantioselective Alkylation of Arylacetic Acids: Structural Studies and a Stereochemical Model.

A combination of X-ray crystallography, Li, N, and C NMR spectroscopies, and density functional theory computations affords insight into the structures and reactivities of intervening aggregates underlying highly selective asymmetric alkylations of carboxylic acid dianions (enediolates) mediated by...

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Detalles Bibliográficos
Publicado en:Journal of the American Chemical Society Vol. 135; no. 45; pp. 16853 - 16865
Autores principales: Yun Ma, Stivala, Craig E., Wright, Ashley M., Hayton, Trevor, Jun Liang, Keresztes, Ivan, Lobkovsky, Emil, Collum, David B., Zakarian, Armen
Formato: Artículo
Publicado: American Chemical Society 11/13/2013
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Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:A combination of X-ray crystallography, Li, N, and C NMR spectroscopies, and density functional theory computations affords insight into the structures and reactivities of intervening aggregates underlying highly selective asymmetric alkylations of carboxylic acid dianions (enediolates) mediated by the dilithium salt of a C-symmetric chiral tetraamine. Crystallography shows a trilithiated n-butyllithium-dilithiated amide that has dimerized to a hexalithiated form. Spectroscopic studies implicate the non-dimerized trilithiated mixed aggregate. Reaction of the dilithiated amide with the dilithium enediolate derived from phenylacetic acid affords a tetralithio aggregate comprised of the two dianions in solution and the dimerized octalithio form in the solid state. Computational studies shed light on the details of the solution structures and afford a highly predictive stereochemical model.