State Key Laboratory and Institute of Elemento-Organic Chemistry, College of Chemistry , Nankai University , Tianjin 300071 , China.
Department of Chemistry , Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 34141 , Republic of Korea.
J Am Chem Soc. 2019 May 1;141(17):7194-7201. doi: 10.1021/jacs.9b02811. Epub 2019 Apr 23.
While remarkable progress has been made over the past decade, new design strategies for chiral catalysts in enantioselective C(sp)-H functionalization reactions are still highly desirable. In particular, the ability to use attractive noncovalent interactions for rate acceleration and enantiocontrol would significantly expand the current arsenal for asymmetric metal catalysis. Herein, we report the development of a highly enantioselective Ir(III)-catalyzed intramolecular C(sp)-H amidation reaction of dioxazolone substrates for synthesis of optically enriched γ-lactams using a newly designed α-amino-acid-based chiral ligand. This Ir-catalyzed reaction proceeds with excellent efficiency and with outstanding enantioselectivity for both activated and unactivated alkyl C(sp)-H bonds under very mild conditions. It offers the first general route for asymmetric synthesis of γ-alkyl γ-lactams. Water was found to be a unique cosolvent to achieve excellent enantioselectivity for γ-aryl lactam production. Mechanistic studies revealed that the ligands form a well-defined groove-type chiral pocket around the Ir center. The hydrophobic effect of this pocket allows facile stereocontrolled binding of substrates in polar or aqueous media. Instead of capitalizing on steric repulsions as in the conventional approaches, this new Ir catalyst operates through an unprecedented enantiocontrol mechanism for intramolecular nitrenoid C-H insertion featuring multiple attractive noncovalent interactions.
尽管在过去的十年中取得了显著的进展,但在对映选择性 C(sp)-H 官能化反应中,手性催化剂的新设计策略仍然是非常需要的。特别是,能够使用有吸引力的非共价相互作用来加速反应速率和控制对映选择性,将极大地扩展当前不对称金属催化的武器库。在此,我们报告了一种使用新设计的基于α-氨基酸的手性配体,对二恶唑酮底物进行高度对映选择性的 Ir(III)催化的分子内 C(sp)-H 酰胺化反应,用于合成光学活性的γ-内酰胺。该 Ir 催化反应在非常温和的条件下,对活化和未活化的烷基 C(sp)-H 键具有优异的效率和对映选择性。它为不对称合成γ-烷基γ-内酰胺提供了第一个通用途径。发现水是一种独特的共溶剂,可实现γ-芳基内酰胺生产的优异对映选择性。机理研究表明,配体在 Ir 中心周围形成了一个定义良好的凹槽型手性口袋。该口袋的疏水性允许在极性或水性介质中容易地进行立体控制结合底物。与传统方法中利用空间排斥作用不同,这种新的 Ir 催化剂通过一种前所未有的对映控制机制来进行分子内氮宾 C-H 插入反应,该机制具有多种有吸引力的非共价相互作用。