Driscoll, O.J.; van de Pas, D.J.; Torr, K.M.; Thomas, H.P.; Vendamme, R.; Feghali, E.
An Integrated Biorefinery Proof of Concept: The Synthesis of Fully Bio-Based, Functional Lignin Polyester Copolymers of Cyclic Anhydrides and Epoxides Towards Polyol Applications and Tunable Bio-Derived Materials. Polymers 2025, 17, 2806.
https://doi.org/10.3390/polym17202806
AMA Style
Driscoll OJ, van de Pas DJ, Torr KM, Thomas HP, Vendamme R, Feghali E.
An Integrated Biorefinery Proof of Concept: The Synthesis of Fully Bio-Based, Functional Lignin Polyester Copolymers of Cyclic Anhydrides and Epoxides Towards Polyol Applications and Tunable Bio-Derived Materials. Polymers. 2025; 17(20):2806.
https://doi.org/10.3390/polym17202806
Chicago/Turabian Style
Driscoll, Oliver J., Daniel J. van de Pas, Kirk M. Torr, Hayden P. Thomas, Richard Vendamme, and Elias Feghali.
2025. "An Integrated Biorefinery Proof of Concept: The Synthesis of Fully Bio-Based, Functional Lignin Polyester Copolymers of Cyclic Anhydrides and Epoxides Towards Polyol Applications and Tunable Bio-Derived Materials" Polymers 17, no. 20: 2806.
https://doi.org/10.3390/polym17202806
APA Style
Driscoll, O. J., van de Pas, D. J., Torr, K. M., Thomas, H. P., Vendamme, R., & Feghali, E.
(2025). An Integrated Biorefinery Proof of Concept: The Synthesis of Fully Bio-Based, Functional Lignin Polyester Copolymers of Cyclic Anhydrides and Epoxides Towards Polyol Applications and Tunable Bio-Derived Materials. Polymers, 17(20), 2806.
https://doi.org/10.3390/polym17202806