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Updated: Aug 5, 2026

Procedure for Fabricating Biofunctional Nanofibers
Published on: September 10, 2012
Multifunctional Macrofibers via Wet Spinning: Integrating Antibacterial, Flame-Retardant, and UV Shielding Properties
Guilu Xu1,2, Ying Wu1,2, Xichao Liang3
1College of Biomass Science and Engineering, Key Laboratory of Biomass Fibers for Medical Care in Textile Industry, National Key Laboratory of Advanced Polymer Materials, Sichuan University, Chengdu 610065, China.
Abstract:
Wet spinning of nanocellulose in purely aqueous systems for functionalized filament formation represents a significant yet challenging research frontier. This study develops a sustainable wet-spinning approach to produce high-performance macrofibers using TEMPO-oxidized bacterial cellulose nanofibers (TOBCN), sodium alginate (Alg), and metal-phenolic networks (MPNs). The system utilizes Fe3+-mediated cross-linking in MPNs combined with Ca2+-induced ionic bonding with TOBCN to achieve enhanced mechanical properties. The optimized Alg/TAFe1-TOBC2 fiber demonstrates remarkable multifunctional characteristics, including photothermal antibacterial efficacy exceeding 99% against both Escherichia coli and Staphylococcus aureus, superior flame retardancy with 61.05% lower heat release compared to cotton, and excellent UV protection with UV protection factor values surpassing 100, which exceed standard textile requirements. The purely aqueous processing and biomass-based composition ensure environmental compatibility and biocompatibility. These macrofibers hold promise for protective textiles, combining sustainability with high performance.
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