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Asymmetric Cascade Annulation Based on Enantioselective Oxa-Diels–Alder Cycloaddition of in Situ Generated Isochromenyliums by Cooperative Binary Catalysis of Pd(OAc)<sub>2</sub> and (<i>S</i>)-Trip

Journal of the American Chemical SocietyPublished 8 July 2013
Shuyan Yu, Hao Zhang, Yang Gao, Lei Mo, Shaozhong Wang, Zhu‐Jun Yao
Citations164
SJR quartileQ1
SJR score5.55
SNIP2.61

TL;DR

The mechanism study suggests that (S)-Trip plays multiple roles in assembling the reactants and controlling the stereoselectivity, and shows great efficiency in establishing dense multiple chiral centers including quaternary carbons of variable bridged ring systems.

Abstract

An asymmetric cascade annulation between 2-hydroxystyrenes and 2-alkynylbenaldehyes or 1-(2-alkynylphenyl)ketones has been established with good to excellent enantioselectivities (up to >99.5% ee), on the basis of an enantioselective oxa-Diels-Alder cycloaddition of in situ generated metallo-isochromenylium intermediates, by cooperative binary catalysis of Pd(OAc)2 and (S)-Trip. The developed methodology is workable for a broad spectrum of substrates and shows great efficiency in establishing dense multiple chiral centers including quaternary carbons of variable bridged ring systems. The mechanism study suggests that (S)-Trip plays multiple roles in assembling the reactants and controlling the stereoselectivity.

Keywords

Chemistry