Abstract
Several efforts have been dedicated to the development of lignin-based polyurethanes (PU) in recent years. The low and heterogeneous reactivity of lignin hydroxyl groups towards diisocyanates, arising from their highly complex chemical structure, limits the application of this biopolymer in PU synthesis. Besides the well-known differences in the reactivity of aliphatic and aromatic hydroxyl groups, experimental work in which the reactivity of both types of hydroxyl, especially the aromatic ones present in syringyl (S-unit), guaiacyl (G-unit), and p-hydroxyphenyl (H-unit) building units are considered and compared, is still lacking in the literature. In this work, the hydroxyl reactivity of two kraft lignin grades towards 4,4′-diphenylmethane diisocyanate (MDI) was investigated.31 P NMR allowed the monitoring of the reactivity of each hydroxyl group in the lignin structure. FTIR spectra revealed the evolution of peaks related to hydroxyl consumption and urethane formation. These results might support new PU developments, including the use of unmodified lignin and the synthesis of MDI-functionalized biopolymers or prepolymers.
Author supplied keywords
Cite
CITATION STYLE
Antonino, L. D., Gouveia, J. R., de Sousa Júnior, R. R., Garcia, G. E. S., Gobbo, L. C., Tavares, L. B., & Dos Santos, D. J. (2021). Reactivity of aliphatic and phenolic hydroxyl groups in kraft lignin towards 4,4′ mdi. Molecules, 26(8). https://doi.org/10.3390/molecules26082131
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.