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由酮类化合物实现的三烷基硅基保护的氰醇的稳健、高效且无催化的合成。

Robust and efficient, yet uncatalyzed, synthesis of trialkylsilyl-protected cyanohydrins from ketones.

作者信息

Cabirol Fabien L, Lim Angela E C, Hanefeld Ulf, Sheldon Roger A, Lyapkalo Ilya M

机构信息

Institute of Chemical and Engineering Sciences, 1 Pesek Road, Jurong Island, S(627833), Singapore.

出版信息

J Org Chem. 2008 Mar 21;73(6):2446-9. doi: 10.1021/jo702587e. Epub 2008 Feb 29.

Abstract

High-yielding cyanosilylation of ketones with NaCN and various chlorotrialkylsilanes in DMSO proceeds smoothly without catalysis to give silyl-protected ketone cyanohydrins. The unique role of DMSO consists in rendering naked cyanide anions that reversibly add to the C double bond O bond at the rate-determining step followed by fast trapping of the transient tertiary sodium cyanoalcoholates with chlorotrialkylsilanes or in situ generated cyanotrialkylsilanes. Preparatively, the reaction matches the best known catalytic cyanosilylation systems applying expensive Me(3)SiCN and demonstrates unprecedented efficiency in the synthesis of sterically congested trialkylsilyl-protected cyanohydrins.

摘要

在二甲基亚砜(DMSO)中,酮与氰化钠和各种氯代三烷基硅烷进行高产率的氰硅烷化反应,无需催化即可顺利进行,生成硅基保护的酮氰醇。DMSO的独特作用在于提供裸露的氰根阴离子,其在速率决定步骤中以可逆方式加成到碳 - 氧双键上,随后用氯代三烷基硅烷或原位生成的氰基三烷基硅烷快速捕获瞬态叔氰醇钠。在制备方面,该反应与应用昂贵的三甲基硅氰(Me(3)SiCN)的最知名催化氰硅烷化体系相当,并且在空间位阻较大的三烷基硅基保护氰醇的合成中展现出前所未有的效率。

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