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Plant oils: The perfect renewable resource for polymer science?!

European Polymer Journal · 2010 · Vol. 47(5) · pp. 837–852
Lucas Montero de EspinosaMichaël A. R. Meier

Abstract

Already for a long time, plant oils and their derivatives have been used by polymer chemists due to their renewable nature, world wide availability, relatively low price, and their rich application possibilities. Although many different synthetic approaches have been used, more recent examples are pointing in the direction of catalytic transformations and other efficient reactions to achieve a more sustainable production of polymers from these renewable resources. In this context, olefin metathesis, thiol–ene additions, and other processes can contribute not only to a more efficient synthesis of plant oil based polymers, but also to broaden the application possibilities of plant oils. This feature article provides an overview of the present situation with special attention to the use of olefin metathesis and thiol–ene chemistry as synthetic methods and as polymerization techniques.

Synthetic Organic Chemistry Methodsbiodegradable polymer synthesis and propertiesAdvanced Polymer Synthesis and CharacterizationContext (archaeology)Renewable resourceRenewable energyPolymerBiochemical engineeringMetathesisPolymerizationOrganic chemistryPolymer scienceChemistry
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References
Recent developments in the chemistry of halogen-free flame retardant polymers
Progress in Polymer Science · 2002 · 1,547 citations
Development and application of triglyceride‐based polymers and composites
Journal of Applied Polymer Science · 2001 · 636 citations
Thiol–Ene Click Chemistry
Angewandte Chemie International Edition · 2010 · 4,026 citations
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