2018Advanced Synthesis & CatalysisRequires access

Synthesis of Enantiopure γ‐Lactones via a RuPHOX‐Ru Catalyzed Asymmetric Hydrogenation of γ‐Keto Acids

Jing Li, Yujie Ma, Yufei Lu, Yangang Liu, Delong Liu, Wanbin Zhang

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Abstract

Abstract A RuPHOX−Ru catalyzed asymmetric hydrogenation of γ‐keto acids has been developed, affording the corresponding enantiopure γ‐lactones in high yields and with up to 97% ee. The reaction could be performed on a gram scale with a relatively low catalyst loading (up to 10000 S/C) under the indicated reaction conditions and the resulting products can be transformed to several enantiopure building blocks, biologically active compounds and enantiopure drugs. magnified image

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Abstract A RuPHOX−Ru catalyzed asymmetric hydrogenation of γ‐keto acids has been developed, affording the corresponding enantiopure γ‐lactones in high yields and with up to 97% ee. The reaction could be performed on a gram scale with a relatively low catalyst loading (up to 10000 S/C) under the indicated reaction conditions and the resulting products can be transformed to several enantiopure building blocks, biologically active compounds and enantiopure drugs. magnified image

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Available abstract

Abstract A RuPHOX−Ru catalyzed asymmetric hydrogenation of γ‐keto acids has been developed, affording the corresponding enantiopure γ‐lactones in high yields and with up to 97% ee. The reaction could be performed on a gram scale with a relatively low catalyst loading (up to 10000 S/C) under the indicated reaction conditions and the resulting products can be transformed to several enantiopure building blocks, biologically active compounds and enantiopure drugs. magnified image

Key concepts: Enantiopure drug, Chemistry, Catalysis, Enantioselective synthesis, Asymmetric hydrogenation, Combinatorial chemistry, Organic chemistry, Reaction conditions

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Synthesis of Enantiopure γ‐Lactones via a RuPHOX‐Ru Catalyzed Asymmetric Hydrogenation of γ‐Keto Acids — Research Paper | ScholarLens