聚二甲基硅氧烷
气凝胶
涂层
水溶液
材料科学
织物
化学工程
接触角
磨损(机械)
生物污染
生物高聚物
光热治疗
木桶(钟表)
螯合作用
石墨烯
抗菌活性
纳米技术
化学
复合材料
制浆造纸工业
超疏水涂料
热稳定性
聚酯纤维
抗菌剂
作者
Rongdi Wu,Jitong Han,Weichao Chen,Xin Yu,Ruixin Gao,Chunming Zhang
标识
DOI:10.1021/acssuschemeng.5c09590
摘要
A biomimetic, fluorine-free, three-layer aqueous coating for cotton─composed of an Fe2+/Cu2+-catalyzed polydopamine (PDA) primer, a chitosan–SiO2 (CS) aerogel midlayer, and a thin polydimethylsiloxane (PDMS) overcoat─was developed to impart durable superhydrophobicity, rapid photothermal self-healing, antibacterial activity, and efficient oil–water separation. Treated cotton exhibited a static water contact angle (WCA) of 170° and retained a WCA of >155° after 2500 Martindale abrasion cycles or 30 ISO 105-C06 wash cycles; the WCA was restored to ≥160° after ambient storage or within 20 min under natural sunlight as surface temperatures approached ≈50 °C. PDA-mediated Cu2+ chelation (5 mM) produced >99% inhibition of Escherichia coli and Staphylococcus aureus; gravity-driven oil–water separation efficiencies exceeded 98% with >96% retention after 12 cycles. Preliminary scalability and environmental impact analyses, including material inventories and PDMS release estimates, support the potential for industrial translation. This fluorine-free, beetle-exoskeleton-inspired strategy offers a scalable route to multifunctional, sustainable textile finishing and environmental remediation.
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