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Catalytic asymmetric synthesis of spirocyclobutyl oxindoles and beyond via [2+2] cycloaddition and sequential transformations
Authors:Xia Zhong  Jiuqi Tan  Jianglin Qiao  Yuqiao Zhou  Cidan Lv  Zhishan Su  Shunxi Dong  Xiaoming Feng
Institution:Key Laboratory of Green Chemistry & Technology, Ministry of Education, College of Chemistry, Sichuan University, Chengdu 610064 China,
Abstract:Efficient asymmetric synthesis of a collection of small molecules with structural diversity is highly important to drug discovery. Herein, three distinct types of chiral cyclic compounds were accessible by enantioselective catalysis and sequential transformations. Highly regio- and enantioselective 2+2] cycloaddition of (E)-alkenyloxindoles with the internal C Created by potrace 1.16, written by Peter Selinger 2001-2019 C bond of N-allenamides was achieved with N,N′-dioxide/Ni(OTf)2 as the catalyst. Various optically active spirocyclobutyl oxindole derivatives were obtained under mild conditions. Moreover, formal 4+2] cycloaddition products occurring at the terminal C Created by potrace 1.16, written by Peter Selinger 2001-2019 C bond of N-allenamides, dihydropyran-fused indoles, were afforded by a stereospecific sequential transformation with the assistance of a catalytic amount of Cu(OTf)2. In contrast, performing the conversion under air led to the formation of γ-lactones via the water-involved deprotection and rearrangement process. Experimental studies and DFT calculations were performed to probe the reaction mechanism.

Three distinct types of chiral cyclic compounds were accessible by catalytic asymmetric synthesis of spirocyclobutyl oxindoles via 2+2] cycloaddition and sequential transformations.
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