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Lewis acid ionic liquid catalysed synthesis of bioderived surfactants from β-pinene

Jacob, Philippa L.; Machado, Fabricio; Rance, Graham A.; Walker, Gary; Taresco, Vincenzo; Keddie, Daniel J.; Howdle, Steven M.

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Authors

Philippa L. Jacob

Fabricio Machado

Gary Walker

Dr DANIEL KEDDIE Daniel.Keddie@nottingham.ac.uk
SENIOR RESEARCH OFFICER IN POLYMER SYNTHESIS



Abstract

Cationic polymerisation of β-pinene (βP) via earth abundant catalysis has been investigated as a route to low molar mass poly(β-pinene) (PBP) for surfactant applications. As a ‘greener’ alternative to the often hazardous and poorly abundant Lewis acid catalysts reported for the cationic polymerisation of βP, imidazolium-based Lewis acid ionic liquids have been used as catalysts for the polymerisation, yielding polymers of up to Mn = 2560 g mol−1. Iron(iii) chloride (FeCl3) proved to be an effective catalyst for the transformation in a scaled-up, industrially applicable polymerisation resulting in polymers of slightly higher molar mass (Mn = 5680 g mol−1). Supercritical carbon dioxide (scCO2) proved to be an effective solvent for the purification of the polymers on a large scale, efficiently removing unreacted monomer and solvent. The unsaturated nature of the polymer has been exploited via post-polymerisation functionalisation reactions (epoxidation/hydrolysis and radical thiol-ene), endowing the polymers with hydrophilic groups. The functionalised PBPs were fully characterised, demonstrating variations in thermal properties compared to the unfunctionalised polymer. Finally, with careful balancing of the amphiphilicity, the functionalised polymers were shown to stabilise oil/water emulsions for up to two weeks, demonstrating the potential of these bioderived materials in several surfactant applications.

Citation

Jacob, P. L., Machado, F., Rance, G. A., Walker, G., Taresco, V., Keddie, D. J., & Howdle, S. M. (2024). Lewis acid ionic liquid catalysed synthesis of bioderived surfactants from β-pinene. Polymer Chemistry, 15(42), 4327-4338. https://doi.org/10.1039/d4py00925h

Journal Article Type Article
Acceptance Date Oct 4, 2024
Online Publication Date Oct 7, 2024
Publication Date Nov 14, 2024
Deposit Date Dec 12, 2024
Publicly Available Date Dec 12, 2024
Journal Polymer Chemistry
Print ISSN 1759-9954
Electronic ISSN 1759-9962
Publisher Royal Society of Chemistry
Peer Reviewed Peer Reviewed
Volume 15
Issue 42
Pages 4327-4338
DOI https://doi.org/10.1039/d4py00925h
Public URL https://nottingham-repository.worktribe.com/output/40590256
Publisher URL https://pubs.rsc.org/en/content/articlelanding/2024/py/d4py00925h

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