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Langmuir· 2026Q1

Alev Geciktirici, Antibakteriyel ve Dayanıklı Hidrofobik Tekstiller İçin Çok Fonksiyonlu Biyokütle Türevli Kompozit Kaplamalar

Multifunctional Biomass-Derived Composite Coatings for Flame-Retardant, Antibacterial, and Durable Hydrophobic Textiles

Bingfeng Li, Lingxiang Yin, Zihan Zhao, Yu Hu ve diğerleri

Kısa özet

Fosforlanmış kitosan, bakır nanopartikülleri ve PDMS-SiO2'den oluşan yeni bir kompozit kaplama, pamuk ve PLA kumaşlara alev geciktirici, >%99 antibakteriyel aktivite ve dayanıklı hidrofobiklik kazandırır.

Yapay zekâ ile başlık ve abstract'tan üretildi; tam metin okunmaz.

Özet (abstract)

Abstract Multifunctional textiles with integrated protective properties and long-term durability are highly desirable for practical applications. Here, a facile and scalable coating strategy is developed to fabricate biomass-derived composite coatings on cotton and polylactic acid (PLA) nonwoven fabrics, enabling simultaneous flame retardancy, antibacterial activity, and water repellency. The coating, composed of phosphorylated chitosan (PCS), polydopamine-modified copper nanoparticles (PDA-CuNPs), and PDMS-SiO2, forms a hierarchical micro/nanostructure that contributes to the multifunctional performance. The coated textiles exhibit significantly improved flame retardancy, as evidenced by increased limiting oxygen index and reduced total heat release, which can be attributed to synergistic condensed-phase charring and catalytic effects. In addition, the hierarchical structure imparts excellent water repellency. The textiles demonstrate strong antibacterial activity against Escherichia coli and Staphylococcus aureus (>99%). Notably, PDA modification may contribute to prolonged antibacterial durability by stabilizing copper species, extending antibacterial durability from 2 to 14 days before the activity decreases below 70%. Furthermore, flame retardancy and antibacterial efficacy are well retained after 20 washing cycles. Repeated laundering eliminates the initial superhydrophobicity, reducing the water contact angle to ∼130°, though favorable hydrophobic performance is still preserved. This work provides a sustainable and effective strategy for constructing durable multifunctional textile coatings for protective and wearable applications.

Yazarların özeti; kaynağından alınmıştır. Langmuir, 2026 · DOI ↗

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