Kerrigan Michael H, Jeon Sang-Jin, Chen Young K, Salvi Luca, Carroll Patrick J, Walsh Patrick J
P. Roy and Diana T. Vagelos Laboratories, Department of Chemistry, University of Pennsylvania, 231 South 34th Street, Philadelphia, Pennsylvania 19104-6323, USA.
J Am Chem Soc. 2009 Jun 24;131(24):8434-45. doi: 10.1021/ja809821x.
(Z)-trisubstituted allylic alcohols are widespread structural motifs in natural products and biologically active compounds but are difficult to directly prepare. Introduced herein is a general one-pot multicomponent coupling method for the synthesis of (Z)-alpha,alpha,beta-trisubstituted allylic alcohols. (Z)-trisubstituted vinylzinc reagents are formed in situ by initial hydroboration of 1-bromo-1-alkynes. Addition of dialkylzinc reagents induces a 1,2-metalate rearrangement that is followed by a boron-to-zinc transmetalation. The resulting vinylzinc reagents add to a variety of prochiral aldehydes to produce racemic (Z)-trisubstituted allylic alcohols. When enantioenriched aldehyde substrates are employed, (Z)-trisubstituted allylic alcohols are isolated with high dr (>20:1 in many cases). For example, vinylation of enantioenriched benzyl-protected alpha- and beta-hydroxy propanal derivatives furnished the expected anti-Felkin addition products via chelation control. Surprisingly, silyl-protected alpha-hydroxy aldehydes also afford anti-Felkin addition products. A protocol for the catalytic asymmetric addition of (Z)-trisubstituted vinylzinc reagents to prochiral aldehydes with a (-)-MIB-based catalyst has also been developed. Several additives were investigated as inhibitors of the Lewis acidic alkylzinc halide byproducts, which promote the background reaction to form the racemate. Alpha-ethyl and alpha-cyclohexyl (Z)-trisubstituted allylic alcohols can now be synthesized with excellent levels of enantioselectivity in the presence of diamine inhibitors.
(Z)-三取代烯丙醇是天然产物和生物活性化合物中广泛存在的结构单元,但难以直接制备。本文介绍了一种用于合成(Z)-α,α,β-三取代烯丙醇的通用一锅多组分偶联方法。(Z)-三取代乙烯基锌试剂通过1-溴-1-炔烃的初始硼氢化反应原位形成。二烷基锌试剂的加入引发1,2-金属盐重排,随后是硼到锌的转金属化反应。生成的乙烯基锌试剂与多种前手性醛加成,生成外消旋的(Z)-三取代烯丙醇。当使用对映体富集的醛底物时,可分离得到高非对映选择性(在许多情况下dr>20:1)的(Z)-三取代烯丙醇。例如,对映体富集的苄基保护的α-和β-羟基丙醛衍生物的乙烯基化反应通过螯合控制提供了预期的反-Felkin加成产物。令人惊讶的是,硅基保护的α-羟基醛也能得到反-Felkin加成产物。还开发了一种使用基于(-)-MIB的催化剂将(Z)-三取代乙烯基锌试剂催化不对称加成到前手性醛的方法。研究了几种添加剂作为路易斯酸性卤化烷基锌副产物的抑制剂,这些副产物会促进背景反应形成外消旋体。现在,在二胺抑制剂存在下,可以以优异的对映选择性合成α-乙基和α-环己基(Z)-三取代烯丙醇。