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Biarylphosphonites: a class of monodentate phosphorus(iii) ligands that outperform their chelating analogues in asymmetric hydrogenation catalysis

A.L. Gillon, K. Heslop, David J. Hyett, Aina Martorell, A.G. Orpen, Paul G. Pringle, Carmen Claver, Elena Fernández

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Abstract

Rhodium(I) complexes of monodentate phosphonites derived from 2,2′-binaphthol and 9,9′-biphenanthrol are compared with diphosphonite chelate analogues as catalysts for asymmetric hydrogenation; the high ee’s (up to 92%) obtained with the monodentate systems and the observation that they are sometimes superior to the chelate analogues are discussed.

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Rhodium(I) complexes of monodentate phosphonites derived from 2,2′-binaphthol and 9,9′-biphenanthrol are compared with diphosphonite chelate analogues as catalysts for asymmetric hydrogenation; the high ee’s (up to 92%) obtained with the monodentate systems and the observation that they are sometimes superior to the chelate analogues are discussed.

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Available abstract

Rhodium(I) complexes of monodentate phosphonites derived from 2,2′-binaphthol and 9,9′-biphenanthrol are compared with diphosphonite chelate analogues as catalysts for asymmetric hydrogenation; the high ee’s (up to 92%) obtained with the monodentate systems and the observation that they are sometimes superior to the chelate analogues are discussed.

Key concepts: Denticity, Chelation, Chemistry, Rhodium, Catalysis, Asymmetric hydrogenation, Phosphorus, Medicinal chemistry

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Biarylphosphonites: a class of monodentate phosphorus(iii) ligands that outperform their chelating analogues in asymmetric hydrogenation catalysis — Research Paper | ScholarLens