Asymmetric hydrogenation is one of the most commonly used tools in organic synthesis, whereas, kinetic resolutionviaasymmetric hydrogenation is less developed. Herein, we describe the first iridium catalyzed kinetic resolution of a wide range of trisubstituted secondary and tertiary allylic alcohols. Large selectivity factors were observed in most cases (sup to 211), providing the unreacted starting materials in good yield with high levels of enantiopurity (ee up to >99%). The utility of this method is highlighted in the enantioselective formal synthesis of some bioactive natural products including pumiliotoxin A, inthomycin A and B. DFT studies and a selectivity model concerning the origin of selectivity are presented.

Kinetic resolution of racemic allylic alcohols via iridium-catalyzed asymmetric hydrogenation: scope, synthetic applications and insight into the origin of selectivity / Wu, Haibo; Margarita, Cristiana; Jongcharoenkamol, Jira; Nolan, Mark D.; Singh, Thishana; Andersson, Pher G.. - In: CHEMICAL SCIENCE. - ISSN 2041-6520. - 12:5(2021), pp. 1937-1943. [10.1039/d0sc05276k]

Kinetic resolution of racemic allylic alcohols via iridium-catalyzed asymmetric hydrogenation: scope, synthetic applications and insight into the origin of selectivity

Margarita, Cristiana
Secondo
;
2021

Abstract

Asymmetric hydrogenation is one of the most commonly used tools in organic synthesis, whereas, kinetic resolutionviaasymmetric hydrogenation is less developed. Herein, we describe the first iridium catalyzed kinetic resolution of a wide range of trisubstituted secondary and tertiary allylic alcohols. Large selectivity factors were observed in most cases (sup to 211), providing the unreacted starting materials in good yield with high levels of enantiopurity (ee up to >99%). The utility of this method is highlighted in the enantioselective formal synthesis of some bioactive natural products including pumiliotoxin A, inthomycin A and B. DFT studies and a selectivity model concerning the origin of selectivity are presented.
2021
kinetic resolution; asymmetric hydrogenation; iridium; asymmetric catalysis; allylic alcohols; natural products
01 Pubblicazione su rivista::01a Articolo in rivista
Kinetic resolution of racemic allylic alcohols via iridium-catalyzed asymmetric hydrogenation: scope, synthetic applications and insight into the origin of selectivity / Wu, Haibo; Margarita, Cristiana; Jongcharoenkamol, Jira; Nolan, Mark D.; Singh, Thishana; Andersson, Pher G.. - In: CHEMICAL SCIENCE. - ISSN 2041-6520. - 12:5(2021), pp. 1937-1943. [10.1039/d0sc05276k]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1746891
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