Catalytic concepts for the enantioselective synthesis of alpha-amino and alpha-hydroxy phosphonates

Gröger H, Hammer B (2000)
Chemistry 6(6): 943-948.

Journal Article | Published | English

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The enantioselective synthesis of alpha-amino- and alpha-hydroxy phosphonates by catalytic processes has attracted considerable interest in the last few years, not least because of the pharmaceutical interest in such compounds. This article contains a compilation of the asymmetric synthesis methods developed to date. The described synthetic routes are based on different catalytic concepts, namely, hydrogenation, reductions, dihydroxylation, aminohydroxylation, and hydrophosphonylation.
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Gröger H, Hammer B. Catalytic concepts for the enantioselective synthesis of alpha-amino and alpha-hydroxy phosphonates. Chemistry. 2000;6(6):943-948.
Gröger, H., & Hammer, B. (2000). Catalytic concepts for the enantioselective synthesis of alpha-amino and alpha-hydroxy phosphonates. Chemistry, 6(6), 943-948.
Gröger, H., and Hammer, B. (2000). Catalytic concepts for the enantioselective synthesis of alpha-amino and alpha-hydroxy phosphonates. Chemistry 6, 943-948.
Gröger, H., & Hammer, B., 2000. Catalytic concepts for the enantioselective synthesis of alpha-amino and alpha-hydroxy phosphonates. Chemistry, 6(6), p 943-948.
H. Gröger and B. Hammer, “Catalytic concepts for the enantioselective synthesis of alpha-amino and alpha-hydroxy phosphonates”, Chemistry, vol. 6, 2000, pp. 943-948.
Gröger, H., Hammer, B.: Catalytic concepts for the enantioselective synthesis of alpha-amino and alpha-hydroxy phosphonates. Chemistry. 6, 943-948 (2000).
Gröger, Harald, and Hammer, B. “Catalytic concepts for the enantioselective synthesis of alpha-amino and alpha-hydroxy phosphonates”. Chemistry 6.6 (2000): 943-948.
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He L, Cai ZH, Pian JX, Du GF., ScientificWorldJournal 2013(), 2013
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Chiral biphenylamide derivative: an efficient organocatalyst for the enantioselective synthesis of alpha-hydroxy phosphonates.
Jiang J, Chen X, Wang J, Hui Y, Liu X, Lin L, Feng X., Org. Biomol. Chem. 7(21), 2009
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Iron-catalyzed dehydrogenative phosphonation of N,N-dimethylanilines.
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PMID: 19809631

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