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Advances in Catalytic Asymmetric Reactions Involving o-Hydroxybenzyl Alcohols

Journal

CHINESE JOURNAL OF ORGANIC CHEMISTRY
Volume 43, Issue 3, Pages 974-999

Publisher

SCIENCE PRESS
DOI: 10.6023/cjoc202211022

Keywords

o-hydroxybenzyl alcohol; o-quinone methide; asymmetric catalysis; cycloaddition; cyclization; addition

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The article discusses the application and related issues of o-QMs and summarizes the rapid development of catalytic asymmetric reactions using o-hydroxybenzyl alcohols as precursors. It also highlights the potential of these reactions in synthesizing chiral oxygen-containing heterocycles and arylmethane derivatives.
Ortho-quinone methides (o-QMs) belong to a class of highly reactive organic intermediates, which play an important role in catalytic asymmetric formations of carbon-carbon bond and carbon-heteroatom bond. However, o-QMs are highly unstable, which led to the underdevelopment of catalytic asymmetric reactions involving o-QMs. The utilization of some precursors for in situ generating o-QMs is a solution to address this challenging issue. Therefore, the development of catalytic asymmetric reactions involving in situ generated o-QMs has absorbed great attention from the chemists. The key to develop such reactions is to exploit easily available and stable precursors of o-QMs. Ortho-hydroxybenzyl alcohols are a kind of o-QM precursors with unique advantages. Hence, the catalytic asymmetric [4+n] cycloadditions, tandem cyclizations and nucleophilic additions of o-hydroxybenzyl alcohols have developed very rapidly in recent years, which have become efficient strategies for the synthesis of chiral oxygen-containing heterocycles and arylmethane derivatives. The catalytic asymmetric reactions involving o-hydroxybenzyl alcohols are summarized, which will open a new window for the design of new type of o-hydroxybenzyl alcohols and their involved catalytic asymmetric reactions.

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