Department of Chemistry, Yale University, 225 Prospect Street, Post Office Box 208107, New Haven, CT 06520-8107, USA.
Science. 2010 Jun 4;328(5983):1251-5. doi: 10.1126/science.1188403.
Despite the widespread use of axially chiral, or atropisomeric, biaryl ligands in modern synthesis and the occurrence of numerous natural products exhibiting axial chirality, few catalytic methods have emerged for the direct asymmetric preparation of this compound class. Here, we present a tripeptide-derived small-molecule catalyst for the dynamic kinetic resolution of racemic biaryl substrates. The reaction proceeds via an atropisomer-selective electrophilic aromatic substitution reaction using simple bromination reagents. The result is an enantioselective synthesis that delivers chiral nonracemic biaryl compounds with excellent optical purity and good isolated chemical yields (in most cases a >95:5 enantiomer ratio and isolated yields of 65 to 87%). A mechanistic model is advanced that accounts for the basis of selectivity observed.
尽管轴向手性或阻转异构体联芳基配体在现代合成中被广泛应用,并且许多具有轴向手性的天然产物也存在,但目前只有少数催化方法可用于直接不对称制备这类化合物。在这里,我们提出了一种三肽衍生的小分子催化剂,用于外消旋联芳基底物的动态动力学拆分。该反应通过使用简单的溴化试剂进行对映选择性亲电芳香取代反应来进行。其结果是对映选择性合成,可提供具有优异光学纯度和良好分离化学收率(在大多数情况下,对映体比例大于 95:5,分离收率为 65%至 87%)的手性非外消旋联芳基化合物。提出了一种机械模型,该模型解释了所观察到的选择性的基础。