Formal Asymmetric Hydration of Non-Activated Alkenes in Aqueous Medium through a "Chemoenzymatic Catalytic System"

Schnapperelle I, Hummel W, Gröger H (2012)
Chemistry - A European Journal 18(4): 1073-1076.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Abstract / Bemerkung
A direct one-pot conversion of (substituted) styrene(s) into the corresponding (substituted) (R)-phenylethan-1-ol(s) in a highly enantioselective manner has been achieved by using a "chemoenzymatic catalytic system", comprising a palladium-catalyzed Wacker-Tsuji oxidation and subsequent enantioselective enzymatic reduction of the in situ formed (substituted) acetophenone(s). Copyright 2012 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
Erscheinungsjahr
2012
Zeitschriftentitel
Chemistry - A European Journal
Band
18
Ausgabe
4
Seite(n)
1073-1076
ISSN
0947-6539
Page URI
https://pub.uni-bielefeld.de/record/2471821

Zitieren

Schnapperelle I, Hummel W, Gröger H. Formal Asymmetric Hydration of Non-Activated Alkenes in Aqueous Medium through a "Chemoenzymatic Catalytic System". Chemistry - A European Journal. 2012;18(4):1073-1076.
Schnapperelle, I., Hummel, W., & Gröger, H. (2012). Formal Asymmetric Hydration of Non-Activated Alkenes in Aqueous Medium through a "Chemoenzymatic Catalytic System". Chemistry - A European Journal, 18(4), 1073-1076. https://doi.org/10.1002/chem.201102579
Schnapperelle, Ingo, Hummel, Werner, and Gröger, Harald. 2012. “Formal Asymmetric Hydration of Non-Activated Alkenes in Aqueous Medium through a "Chemoenzymatic Catalytic System"”. Chemistry - A European Journal 18 (4): 1073-1076.
Schnapperelle, I., Hummel, W., and Gröger, H. (2012). Formal Asymmetric Hydration of Non-Activated Alkenes in Aqueous Medium through a "Chemoenzymatic Catalytic System". Chemistry - A European Journal 18, 1073-1076.
Schnapperelle, I., Hummel, W., & Gröger, H., 2012. Formal Asymmetric Hydration of Non-Activated Alkenes in Aqueous Medium through a "Chemoenzymatic Catalytic System". Chemistry - A European Journal, 18(4), p 1073-1076.
I. Schnapperelle, W. Hummel, and H. Gröger, “Formal Asymmetric Hydration of Non-Activated Alkenes in Aqueous Medium through a "Chemoenzymatic Catalytic System"”, Chemistry - A European Journal, vol. 18, 2012, pp. 1073-1076.
Schnapperelle, I., Hummel, W., Gröger, H.: Formal Asymmetric Hydration of Non-Activated Alkenes in Aqueous Medium through a "Chemoenzymatic Catalytic System". Chemistry - A European Journal. 18, 1073-1076 (2012).
Schnapperelle, Ingo, Hummel, Werner, and Gröger, Harald. “Formal Asymmetric Hydration of Non-Activated Alkenes in Aqueous Medium through a "Chemoenzymatic Catalytic System"”. Chemistry - A European Journal 18.4 (2012): 1073-1076.

8 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

On the current role of hydratases in biocatalysis.
Engleder M, Pichler H., Appl Microbiol Biotechnol 102(14), 2018
PMID: 29785499
Multienzyme One-Pot Cascade for the Stereoselective Hydroxyethyl Functionalization of Substituted Phenols.
Payer SE, Pollak H, Schmidbauer B, Hamm F, Juričić F, Faber K, Glueck SM., Org Lett 20(17), 2018
PMID: 30110168
Exploring the Catalytic Promiscuity of Phenolic Acid Decarboxylases: Asymmetric, 1,6-Conjugate Addition of Nucleophiles Across 4-Hydroxystyrene.
Payer SE, Sheng X, Pollak H, Wuensch C, Steinkellner G, Himo F, Glueck SM, Faber K., Adv Synth Catal 359(12), 2017
PMID: 28713228
Cooperative tandem catalysis by an organometallic complex and a metalloenzyme.
Denard CA, Huang H, Bartlett MJ, Lu L, Tan Y, Zhao H, Hartwig JF., Angew Chem Int Ed Engl 53(2), 2014
PMID: 24536102

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