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Aqueous lignin adhesive for high-performance wood bonding

Xin Zhou, Yu Wang, Songnan Hu, Rongxian Ou, Haisong Qi, Fachuang Lu, John Ralph, Fengxia Yue

Peer-reviewed journalBold claims, read criticallyClaims a big stepReal-world use

In the authors' words

Developing formaldehyde-free and high-performance wood adhesives is imperative for sustainable wood utilization. To overcome performance trade-offs in lignin adhesives, we developed a formaldehyde-free aqueous adhesive formulation via reactive cysteine-functionalized lignin, achieving high performance with an unprecedentedly low lignin loading (20 wt %), which is sprayable and injectable and exhibits excellent fluidity (1.96 mPa·s, 10 3 s −1 ). It undergoes self-curing via forming amide bond, achieving robust bonding performance under simple hot-pressing conditions. The solvent-free lignin adhesive for plywood outperforms commercial resins, demonstrating exceptional dry strength (4.0 MPa), high wet-strength retention (83.7%), and superior durability against extreme temperatures (−196° to 190°C), humid heat aging, and solvents. Cysteine substitution enhances fracture toughness eightfold (reaching 11.06 kJ/m 2 ) by forming dual covalent/noncovalent networks that facilitate the polarity-enabled adhesion and crosslinking-induced toughening. This work establishes an environmentally friendly and scalable strategy for constructing full bio-based adhesives with exceptional processability and durability, providing a paradigm for lignin valorization within lignin-first biorefinery frameworks.

Main resultThe abstract does not state a limitation.

Appeared: Friday, September 25. Science Advances. Peer-reviewed journal.

DOI: 10.1126/sciadv.aee5160