Jeon Sang-Jin, Walsh Patrick J
P. Roy and Diane T. Vagelos Laboratories, Department of Chemistry, University of Pennsylvania, 231 South 34th Street, Philadelphia, Pennsylvania 19104-6323, USA.
J Am Chem Soc. 2003 Aug 13;125(32):9544-5. doi: 10.1021/ja036302t.
Although over 100 catalysts have been reported to catalyze the asymmetric addition of alkyl groups to aldehydes, these catalysts fail to promote additions to ketones with >90% enantioselectivity. This paper describes the asymmetric 1,2-addition of alkyl groups to conjugated cyclic enones to give allylic alcohols with chiral quaternary centers. The resultant allylic alcohols are converted into epoxy alcohols with excellent diastereoselectivities. Treatment of the epoxy alcohols with BF3.OEt2 induces a semipinacol rearrangement to provide alpha,alpha-dialkyl-beta-hydroxy ketones with all-carbon chiral quaternary centers. We also report a one-pot procedure for the asymmetric addition/diastereoselective epoxidation reaction. Simply exposing the reaction mixture to dioxygen after the asymmetric addition reaction is complete results in epoxidation of the allylic alcohol with high diastereoselectivity.
尽管已有超过100种催化剂被报道可催化烷基对醛的不对称加成反应,但这些催化剂无法以>90%的对映选择性促进对酮的加成反应。本文描述了烷基对共轭环状烯酮的不对称1,2-加成反应,以生成具有手性季碳中心的烯丙醇。所得烯丙醇可转化为具有优异非对映选择性的环氧醇。用BF3.OEt2处理环氧醇会引发半频哪醇重排,以提供具有全碳手性季碳中心的α,α-二烷基-β-羟基酮。我们还报道了一种用于不对称加成/非对映选择性环氧化反应的一锅法。在不对称加成反应完成后,只需将反应混合物暴露于氧气中,即可使烯丙醇以高非对映选择性进行环氧化反应。