%0 Journal Article %T Enhancing the strength and toughness of polylactic acid-based composites through one-step co-deposition of active coating onto wood fiber. %A Huo X %A Wan P %A Zhang R %A Zhang Z %A Lv S %J Int J Biol Macromol %V 274 %N 0 %D 2024 Aug 24 %M 38925183 %F 8.025 %R 10.1016/j.ijbiomac.2024.133414 %X A facial strategy of co-deposition is proposed to enhance the interfacial bonding in wood fiber (WF)/polylactic acid (PLA) composites. Dopamine or tannic acid (TA) was co-deposited with 3-aminopropyltriethoxysilane (APTES) onto the WF surface to create active coatings. These coatings were formed through Michael addition and Schiff base reactions and effectively attached to the WF through a combination of hydrogen and covalent bonding. Such active coatings facilitated the connection between WF and PLA through both covalent bonds and physical entanglements, thereby enhancing the interfacial interactions and compatibility between the two components. The co-deposition of TA with APTES was found to be more effective than with dopamine, leading to a dramatic improvement in the tensile strength and elongation at break of the composites by 33.4 % and 185.9 %, respectively. This work offers a facile method to prepare high performance plant fiber reinforced PLA composites, thereby broadening the potential applications of PLA.