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Updated: May 27, 2025

Designed for Molecular Recycling: A Lignin-Derived Semi-aromatic Biobased Polymer
Published on: November 30, 2020
Towards phosphorylated lignin-based epoxy resins: An integrated technological route to obtain a macromonomer with
Danielly da Silva Costa1, Leice Milla Ribeiro de Novais2, Caroline Da Ros Montes D'Oca2
1Federal Institute of Education, Science and Technology of Ceará, 63503-790, Iguatu, CE, Brazil.
Abstract:
The growing search to replace petrochemical derivatives with materials having renewable origin has increased the prospection for biomolecules from lignocellulosic biomass. The aim of this work was to develop epoxy resins based on kraft lignin (KL) with flame retardant properties by phosphorylation of this lignin followed by its glycidylation. The phosphorylation of KL was carried out using 85 % wt. H3PO4 in THF at 40 °C for 30 min, yielding phosphorylated KL (PKL). Glycidylation of KL and PKL were carried out using epichlorohydrin in an alkaline medium without and with TBAB at room temperature for 24 h, obtaining glycidylated KL (GKL) and PKL (GPKL), respectively. Lignins were characterized by FTIR, 1H, 31P and HSQC NMR, TGA, DSC, MCC and wet analyses. Spectral analyses showed that the grafting of phosphorous occurred in the form of monoester phosphate groups and that the use of TBAB significantly increased the quantity of grafted glycidyl groups. GPKL presented enhanced thermal, thermo-oxidative, and solubility properties in comparison with KL. The results of the proposed integrated route showed it was possible to develop bio-based material with enhanced thermal and flame-retardant properties, having great potential for use in various technological applications.
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