Chemoenzymatic Synthesis of Chiral Building Blocks Based on the Kinetic Resolution of Glycerol‐Derived Cyclic Carbonates

Author:

Terazzi Constanza1,Spannenberg Anke1,von Langermann Jan23,Werner Thomas14ORCID

Affiliation:

1. Leibniz Institute for Catalysis e.V. at the University of Rostock Albert-Einstein-Straße 29a 18059 Rostock Germany

2. Biocatalysis Group Institute of Chemistry University of Rostock Albert-Einstein-Straße 3a 18059 Rostock Germany

3. Biocatalysis Group Institute of Chemistry Otto-von-Guericke University Magdeburg Universitätsplatz 2 39106 Magdeburg Germany

4. Department of Chemistry, Paderborn University Center for Sustainable Systems Design Paderborn University Warburger Straße 100 33098 Paderborn Germany

Abstract

AbstractThe biocatalytic kinetic resolution of cyclic carbonates derived from glycerol is reported. A selection of 26 esterases and lipases was tested for the asymmetric hydrolysis of the model substrate (epichlorohydrin carbonate) in aqueous medium. Among them, Pig Liver Esterase and Novozym® 435 showed the best selectivity with E=38 and 49, respectively. Both enzymes were employed for the conversion of 12 glycerol derivatives under optimized conditions. The resolution of halogenated carbonates afforded the unconverted enantiomer in up to >99 : 1 er. Furthermore, Novozym® 435 was successfully recycled 10 times without significant loss of activity. Upscaling and isolation of the chiral carbonate was also demonstrated. Subsequent conversion of this chiral building block allowed the direct one‐pot synthesis of (S)‐Guaifenesin, (S)‐Mephenesin and (S)‐Chlorphenesin in up to 89 % yield and 94 : 6 er.

Funder

Leibniz-Gemeinschaft

Publisher

Wiley

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Catalysis

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