
VERGE Pierre
Send an emailLignin-based benzoxazine vitrimers
Transforming renewable biomass into high-performance materials, this project develops next-generation lignin-based vitrimers using benzoxazine chemistry. The resulting polymers combine sustainability, durability, recyclability, and self-healing properties, opening new opportunities for circular materials in coatings, structural applications, and advanced sustainable technologies.

Elucidating the thermal and polymerization behaviours of benzoxazines from lignin derivatives
A. Trejo-Machin, A. Adjaoud, L. Puchot, R. Dieden, and P. Verge
<p>European Polymer Journal, vol. 124, art. no. 109468, 2020</p>
Adjaoud A., Marcolini B., Dieden R., Puchot L., Verge P.
Journal of the American Chemical Society, vol. 146, n° 19, pp. 13367-13376, 2024
High-Tgand Degradable Isosorbide-Based Polybenzoxazine Vitrimer
Adjaoud A., Puchot L., Verge P.
ACS Sustainable Chemistry and Engineering, vol. 10, n° 1, pp. 594-602, 2022
Polybenzoxazine-based covalent adaptable networks: A mini-review
Adjaoud A., Puchot L., Verge P.
Polymer, vol. 287, art. no. 126426, 2023
A. Trejo-Machin, P. Verge, L. Puchot, and R. Quintana
Green Chemistry, vol. 19, no. 21, pp. 5065-5073, 2017
Adjaoud A., Trejo-Machin A., Puchot L., Verge P.
Polymer Chemistry, vol. 12, n° 22, pp. 3276-3289, 2021
Adjaoud A., Puchot L., Federico C.E., Das R., Verge P.
Chemical Engineering Journal, vol. 453, art. no. 139895, 2023
Lignin-derived thermosets and vitrimers: Bridging the gap between renewable and recyclable materials
Adjaoud A., Brosse N., Verge P.
Materials Today Chemistry, vol. 42, art. no. 102342, 2024
