| Literature DB >> 32372524 |
Qun-Liang Zhang1, Qin Xiong2, Miao-Miao Li1, Wei Xiong1, Bin Shi1, Yu Lan2,3, Liang-Qiu Lu1,4, Wen-Jing Xiao1.
Abstract
Higher-order cycloadditions, particularly [8+2] cycloadditions, are a straightforward and efficient strategy for constructing significant medium-sized architectures. Typically, configuration-restrained conjugated systems are utilized as 8π-components for higher-order concerted cycloadditions. However, for this reason, 10-membered monocyclic skeletons have never been constructed via catalytic asymmetric [8+2] cycloaddition with high peri- and stereoselectivity. Here, we accomplished an enantioselective [8+2] dipolar cycloaddition via the merger of visible-light activation and asymmetric palladium catalysis. This protocol provides a new route to 10-membered monocyclic architectures bearing chiral quaternary stereocenters with high chemo-, peri-, and enantioselectivity. The success of this strategy relied on the facile in situ generation of Pd-containing 1,8-dipoles and their enantioselective trapping by ketene dipolarophiles, which were formed in situ via a photo-Wolff rearrangement.Entities:
Keywords: [8+2] cycloaddition; medium-sized ring; palladium catalysis; visible light
Year: 2020 PMID: 32372524 DOI: 10.1002/anie.202005313
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336