Mukherjee Kallol, Grimblat Nicolas, Sau Somratan, Ghosh Koushik, Shankar Majji, Gandon Vincent, Sahoo Akhila K
School of Chemistry, University of Hyderabad Hyderabad 500046 India
Nicolas Grimblat and Prof. Vincent Gandon, Institut de Chimie Moléculaire et des Matériaux d'Orsay, CNRS UMR 8182, Université Paris-Saclay Bâtiment 420 91405 Orsay Cedex France
Chem Sci. 2021 Oct 20;12(44):14863-14870. doi: 10.1039/d1sc04299h. eCollection 2021 Nov 17.
A direct Pd(ii)-catalyzed kinetic resolution of heteroaryl-enabled sulfoximines through an -C-H alkenylation/arylation of arenes has been developed. The coordination of the sulfoximine pyridyl-motif and the chiral amino acid MPAA ligand to the Pd(ii)-catalyst controls the -discriminating C(aryl)-H activation. This method provides access to a wide range of enantiomerically enriched unreacted aryl-pyridyl-sulfoximine precursors and C(aryl)-H alkenylation/arylation products in good yields with high enantioselectivity (up to >99% ee), and selectivity factor up to >200. The coordination preference of the directing group, ligand effect, geometry constraints, and the transient six-membered concerted-metalation-deprotonation species dictate the stereoselectivity; DFT studies validate this hypothesis.
通过芳烃的-C-H烯基化/芳基化反应,开发了一种直接的钯(II)催化的含杂芳基亚砜亚胺的动力学拆分方法。亚砜亚胺吡啶基序和手性氨基酸MPAA配体与钯(II)催化剂的配位控制了具有区分性的C(芳基)-H活化。该方法能够以良好的产率和高对映选择性(高达>99% ee)获得多种对映体富集的未反应芳基吡啶基亚砜亚胺前体和C(芳基)-H烯基化/芳基化产物,选择性因子高达>200。导向基团的配位偏好、配体效应、几何约束以及瞬态六元协同金属化-去质子化物种决定了立体选择性;密度泛函理论研究验证了这一假设。