Randomized trial develops durable antibacterial cotton fabrics, achieving high bacterial inhibition, implying potential medical applications.
Antimicrobial cotton fabrics are essential for preventing bacterial infections. This study develops a water-resistant antimicrobial cotton fabric by constructing a dragonfly wing-inspired ZnO nanorod array on fiber surfaces via a hydrothermal method, followed by silver doping and hydrophobic modification with HDTMS. The resulting HDTMS-Ag3/ZnO/Cot exhibits excellent antibacterial activity, achieving >99.99% bactericidal rates against E. coli and S. aureus . Notably, this high efficiency remains stable even after 50 accelerated washing cycles, demonstrating exceptional durability. The hydrophobic modification imparts a water contact angle of 158.4°, which significantly reduces bacterial adhesion by 91.7% for E. coli and 91.4% for S. aureus . Furthermore, the fabric shows effective antibiofilm activity and no cytotoxicity. This work presents a simple and efficient strategy for fabricating durable, multifunctional antibacterial textiles, with promising applications in medical protection, high-performance apparel, and sportswear.
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Fang et al. (2026) studied this question.
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