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Enantioselective iridium-catalyzed carbonylallylation from the alcohol oxidation level via transfer hydrogenation: minimizing pre-activation for synthetic efficiency
Soo Bong Han,Michael J. Krische
Chemical Communications Pub Date : 10/16/2009 00:00:00 , DOI:10.1039/B917243M
Abstract

Existing methods for enantioselective carbonyl allylation, crotylation and tert-prenylation require stoichiometric generation of pre-metallated nucleophiles, and often employ stoichiometric chiral modifiers. Under the conditions of transfer hydrogenation employing an ortho-cyclometallated iridium C,O-benzoate catalyst, enantioselective carbonyl allylations, crotylations and tert-prenylations are achieved in the absence of stoichiometric metallic reagents or stoichiometric chiral modifiers. Moreover, under transfer hydrogenation conditions, primary alcohols function dually as hydrogen donors and aldehyde precursors, enabling enantioselective carbonyl addition directly from the alcohol oxidation level.

Graphical abstract: Enantioselective iridium-catalyzed carbonyl allylation from the alcohol oxidation level via transfer hydrogenation: minimizing pre-activation for synthetic efficiency
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