A combined bio-chemical synthesis route for 1-octene sheds light on rhamnolipid structure

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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.

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Tiso, T., Sauer, D. F., Beckerle, K., Blesken, C. C., Okuda, J., & Blank, L. M. (2020). A combined bio-chemical synthesis route for 1-octene sheds light on rhamnolipid structure. Catalysts, 10(8), 1–14. https://doi.org/10.3390/catal10080874

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