Wu Wen-Qiang, Xie Pei-Pei, Wang Le-Yao, Gou Bo-Bo, Lin Yunzhi, Hu Li-Wei, Zheng Chao, You Shu-Li, Shi Hang
Department of Chemistry, Zhejiang University, Hangzhou, Zhejiang Province 310058, China.
Key Laboratory of Precise Synthesis of Functional Molecules of Zhejiang Province, Department of Chemistry, School of Science and Research Center for Industries of the Future, Westlake University, Hangzhou, Zhejiang Province 310030, China.
J Am Chem Soc. 2024 Oct 2;146(39):26630-26638. doi: 10.1021/jacs.4c10876. Epub 2024 Sep 18.
Owing to substantial advances in the past several decades, transition-metal-catalyzed asymmetric reactions have garnered considerable attention as pivotal methods for constructing chiral molecules from abundant, readily available achiral counterparts. These advances are largely attributed to the development of chiral ligands that control stereochemistry through steric repulsion and other noncovalent interactions between the ligands and functional groups or prochiral centers on the substrates. However, stereocontrol weakens dramatically with increasing distance between the reaction site and the functional group or prochiral center. Herein, we report a symphonic strategy for remote stereocontrol of Rh(III)-catalyzed asymmetric benzylic C-H bond addition reactions of diarylmethanes in which the two aryl motifs differ at the and/or position. Specifically, catalysts bearing a new type of chiral cyclopentadienyl (Cp) ligand differentiate between the two aromatic rings of the diarylmethane by arene-selective η coordination, setting up an opportunity for ligand-controlled stereoselective benzylic deprotonation and subsequent stereoselective addition to the 1,1-bis(arylsulfonyl)ethylene.
由于在过去几十年中取得了重大进展,过渡金属催化的不对称反应作为从丰富、易得的非手性底物构建手性分子的关键方法,已引起了广泛关注。这些进展很大程度上归因于手性配体的发展,这些配体通过空间排斥以及配体与底物上的官能团或前手性中心之间的其他非共价相互作用来控制立体化学。然而,随着反应位点与官能团或前手性中心之间距离的增加,立体控制会显著减弱。在此,我们报道了一种用于铑(III)催化的二芳基甲烷不对称苄基C-H键加成反应远程立体控制的协同策略,其中两个芳基基团在[具体位置]和/或[具体位置]有所不同。具体而言,带有新型手性环戊二烯基(Cp)配体的催化剂通过芳烃选择性η配位区分二芳基甲烷的两个芳环,为配体控制的立体选择性苄基去质子化以及随后向1,1-双(芳基磺酰基)乙烯的立体选择性加成创造了机会。