University of Basel, Department of Chemistry, St. Johanns-Ring 19, 4056, Basel, Switzerland.
University of Geneva, Department of Physical Chemistry, 30 Quai Ernest-Ansermet, 1211, Geneva 4, Switzerland.
Angew Chem Int Ed Engl. 2021 Mar 22;60(13):7245-7250. doi: 10.1002/anie.202014605. Epub 2021 Feb 5.
The enantioselective functionalization of nonactivated enantiotopic secondary C-H bonds is one of the greatest challenges in transition-metal-catalyzed C-H activation proceeding by an inner-sphere mechanism. Such reactions have remained elusive within the realm of Pd catalysis. Reported here is the unique reactivity profile of the IBiox ligand family in the Pd -catalyzed intramolecular arylation of such nonactivated secondary C-H bonds. Chiral C -symmetric IBiox ligands led to high enantioselectivities for a broad range of valuable indane products containing a tertiary stereocenter, as well as the arylation of secondary C-H bonds adjacent to amides. Depending on the amide substituents and upon control of reaction time, indanes containing labile tertiary stereocenters were also obtained with high enantioselectivities. Analysis of the steric maps of the IBiox ligands indicated that the level of enantioselectivity correlates with the difference between the two most occupied and the two less occupied space quadrants, and provided a blueprint for the design of even more efficient ligands.
非活化对映异位仲 C-H 键的对映选择性功能化是通过内球机制进行的过渡金属催化 C-H 活化中最大的挑战之一。在钯催化中,此类反应仍然难以实现。本文报道了 IBiox 配体家族在 Pd 催化的此类非活化仲 C-H 键的分子内芳基化反应中的独特反应性。手性 C2 对称 IBiox 配体导致具有广泛应用价值的含三级立体中心的茚满产物以及酰胺邻位仲 C-H 键的芳基化反应具有高对映选择性。根据酰胺取代基和控制反应时间,也可以高对映选择性获得含有不稳定三级立体中心的茚满。IBiox 配体的空间映射分析表明,对映选择性与两个最占据和两个较少占据的空间象限之间的差异相关,并为设计更有效的配体提供了蓝图。