Nicewicz David A, Johnson Jeffrey S
Department of Chemistry, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599-3290, USA.
J Am Chem Soc. 2005 May 4;127(17):6170-1. doi: 10.1021/ja043884l.
A single-pot three-component coupling reaction of silylglyoxylates (1), terminal alkynes, and aldehydes in the presence of ZnI2 and Et3N is presented. The products of the reaction, densely functionalized silyl-protected glycolate aldols (2), can be converted to the corresponding acetonides (3) in a one-pot deprotection/ketalization sequence. A variety of terminal alkynes and aldehydes can be successfully employed to give a range of highly functionalized, fully protected 1,2-diols in good yields and moderate diastereoselectivities. Mechanistic experiments suggest that the zinc acetylide reacts with the silylgyloxylate (1) in a chemoselective manner. Using an unoptimized (+)-N-methylephedrine and Zn(OTf)2 system, silyl-deprotected adduct 2 was formed in 64% ee and 89:11 dr.
本文介绍了在碘化锌和三乙胺存在下,硅基乙醛酸酯(1)、末端炔烃和醛的单锅三组分偶联反应。该反应的产物,即密集官能化的硅基保护的乙醇酸酯醇醛(2),可以通过一锅脱保护/缩酮化序列转化为相应的丙酮化物(3)。各种末端炔烃和醛均可成功用于以良好的产率和适度的非对映选择性得到一系列高度官能化、完全保护的1,2 -二醇。机理实验表明,乙炔锌与硅基乙醛酸酯(1)以化学选择性方式反应。使用未优化的(+)-N -甲基麻黄碱和三氟甲磺酸锌体系,形成了对映体过量为64%且非对映体比例为89:11的硅基脱保护加合物2。