A Combined Bio-Chemical Synthesis Route for 1-Octene Sheds Light on Rhamnolipid Structure

Author:

Tiso TillORCID,Sauer Daniel F.ORCID,Beckerle Klaus,Blesken Christian C.,Okuda Jun,Blank Lars M.

Abstract

Here we report a chemoenzymatic approach to synthesize 1-octene from carbohydrates via ethenolysis of rhamnolipids. Rhamnolipids synthesized by P. putida contain a double bond between carbon five and six, which is experimentally confirmed via olefin cross metathesis. Utilizing these lipids in the ethenolysis catalyzed by a Grubbs−Hoveyda-type catalyst selectively generates 1-octene and with good conversions. This study shows the potential of chemoenzymatic approaches to produce compounds for the chemical industry from renewable resources.

Funder

Deutsche Forschungsgemeinschaft

Horizon 2020

Federal Ministry of Food and Agriculture

Publisher

MDPI AG

Subject

Physical and Theoretical Chemistry,Catalysis

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