Department of Chemistry, University of Michigan , 930 North University Avenue, Ann Arbor, Michigan 48109-1055, United States.
Department of Chemistry, University of Pittsburgh , Pittsburgh, Pennsylvania 15260, United States.
J Am Chem Soc. 2017 Jul 12;139(27):9317-9324. doi: 10.1021/jacs.7b04583. Epub 2017 Jul 3.
An exceptionally hindered class of enantiopure NHC ligands has been developed. While racemic forms had previously been utilized, a scalable and practical route to the enantiopure form of this ligand class is described utilizing a Buchwald-Hartwig N,N-diarylation in a highly sterically demanding environment. Using this newly accessible ligand class, nickel-catalyzed enantioselective reductive coupling reactions of aldehydes and alkynes have been developed. These studies illustrate that the newly available NHC ligands are well suited for simultaneous control of regio- and enantioselectivity, even in cases with internal alkynes possessing only very subtle steric differences between two aliphatic substituents. The steric demand of the new ligand class enables a complementary regiochemical outcome compared with previously described enantioselective processes. Using this method, a number of allylic alcohol derivatives were efficiently obtained with high regioselectivity (up to >95:5) and high enantioselectivity (up to 94% ee). The reaction conditions can also be extended to the reaction of aldehydes and allenes, providing silyl-protected allylic alcohol derivatives possessing a terminal methylene substituent. Computational studies have explained the origin of the exceptional steric demand of this ligand class, the basis for enantioselectivity, and the cooperative relationship of the aldehyde, alkyne, and ligand in influencing enantioselectivity.
已经开发出一类非常受阻碍的手性纯 NHC 配体。虽然之前已经使用了外消旋形式,但本文描述了一种可扩展且实用的方法,可以在高度空间位阻环境中获得该配体类的对映纯形式,该方法利用了 Buchwald-Hartwig N,N-二芳基化反应。使用这种新获得的配体类,已经开发出了镍催化的醛和炔烃的对映选择性还原偶联反应。这些研究表明,新的可用 NHC 配体非常适合同时控制区域和对映选择性,即使在内部炔烃中,两个脂肪族取代基之间只有非常细微的空间差异也是如此。新配体类的空间位阻要求与以前描述的对映选择性过程相比具有互补的区域化学结果。使用该方法,许多烯丙醇衍生物以高区域选择性(高达 >95:5)和高对映选择性(高达 94%ee)高效获得。反应条件也可以扩展到醛和丙二烯的反应,提供带有末端亚甲基取代基的硅保护的烯丙醇衍生物。计算研究解释了该配体类具有特殊空间位阻的原因、对映选择性的基础以及醛、炔烃和配体在影响对映选择性方面的协同关系。