Kim Sangji, Kim Aram, Lee Chanhee, Moon Junsoo, Hong Eun Jeong, Lee Duck-Hyung, Kwon Yongseok
School of Pharmacy, Sungkyunkwan University, Suwon, 16419, Republic of Korea.
Department of Chemistry, Sogang University, Seoul, 04107, Republic of Korea.
Commun Chem. 2023 Feb 25;6(1):42. doi: 10.1038/s42004-023-00839-z.
Palladium-catalyzed asymmetric allylic alkylation has proven to be a powerful method for the preparation of a wide variety of chiral molecules. However, the catalytic and atroposelective allylic alkylation is still rare and challenging, especially for biaryl substrates. Herein, we report the palladium-catalyzed desymmetric and atroposelective allylation, in which the palladium complex with a chiral phosphoramidite ligand enables desymmetrization of nucleophilic 2-arylresorcinols in a highly enantioselective manner. With the aid of the secondary kinetic resolution effect, a wide variety of substrates containing a hydroxymethyl group at the bottom aromatic ring are able to provide O-allylated products up to 98:2 er. Computational studies show an accessible quadrant of the allylpalladium complex and provide three plausible transition states with intra- or intermolecular hydrogen bonding. The energetically favorable transition state is in good agreement with the observed enantioselectivity and suggests that the catalytic reaction would proceed with an intramolecular hydrogen bond.
钯催化的不对称烯丙基烷基化已被证明是一种用于制备多种手性分子的强大方法。然而,催化和阻转选择性烯丙基烷基化仍然很少见且具有挑战性,尤其是对于联芳基底物而言。在此,我们报道了钯催化的去对称化和阻转选择性烯丙基化反应,其中具有手性亚磷酰胺配体的钯配合物能够以高度对映选择性的方式实现亲核性2-芳基间苯二酚的去对称化。借助二级动力学拆分效应,各种在底部芳香环上含有羟甲基的底物能够提供对映体比例高达98:2的O-烯丙基化产物。计算研究表明烯丙基钯配合物存在一个可及象限,并提供了三种具有分子内或分子间氢键的合理过渡态。能量上有利的过渡态与观察到的对映选择性高度吻合,表明催化反应将通过分子内氢键进行。