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

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

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Abstract / Bemerkung
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.
Erscheinungsjahr
2000
Zeitschriftentitel
Chemistry
Band
6
Ausgabe
6
Seite(n)
943-948
ISSN
0947-6539
eISSN
1521-3765
Page URI
https://pub.uni-bielefeld.de/record/2347215

Zitieren

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. https://doi.org/10.1002/(SICI)1521-3765(20000317)6:6<943::AID-CHEM943>3.0.CO;2-4
Gröger, Harald, and 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.

24 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

Synthesis and Reactions of α-Hydroxyphosphonates.
Rádai Z, Keglevich G., Molecules 23(6), 2018
PMID: 29925805
Aminophosphine Oxides: A Platform for Diversified Functions.
Goud EV, Sivaramakrishna A, Vijayakrishna K., Top Curr Chem (Cham) 375(1), 2017
PMID: 28058632
Highly active group 11 metal complexes with α-hydrazidophosphonate ligands.
Salvador-Gil D, Ortego L, Herrera RP, Marzo I, Gimeno MC., Dalton Trans 46(40), 2017
PMID: 28956882
An Ni-PyBisulidine complex for the asymmetric hydrophosphonylation of aldehydes.
Zeng Y, Deng P, Zhang S, Yan H, Liang G, Xiong Y, Zhou H., Org Biomol Chem 14(39), 2016
PMID: 27722409
Copper-catalyzed synthesis of α-hydroxy phosphonates from H-phosphonates and alcohols or ethers.
Zhao Z, Xue W, Gao Y, Tang G, Zhao Y., Chem Asian J 8(4), 2013
PMID: 23345018
NHCs catalyzed hydrophosphonylation of α-ketoesters and α-trifluoromethyl ketones.
He L, Cai ZH, Pian JX, Du GF., ScientificWorldJournal 2013(), 2013
PMID: 24489517
Highly enantioselective hydrophosphonylation of aldehydes: base-enhanced aluminum-salalen catalysis.
Suyama K, Sakai Y, Matsumoto K, Saito B, Katsuki T., Angew Chem Int Ed Engl 49(4), 2010
PMID: 20017170
Asymmetric synthesis and affinity of potent sialyltransferase inhibitors based on transition-state analogues.
Skropeta D, Schwörer R, Haag T, Schmidt RR., Glycoconj J 21(5), 2004
PMID: 15486453

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