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General Strategy to Prepare Single-Layered Ag–Au–Pt Nanocrystal Ternary-Coated Biomass Textiles through Polymer-Driven Self-Assembly

机译:通过聚合物驱动的自组装制备单层Ag-Au-Pt纳米晶体三元涂层的生物质纺织品的一般策略

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摘要

Current metal nanomaterials for developing nanofunctional textiles are mostly based on metal nanoparticles (NPs) that show aqueous instability, a tendency to aggregate, and low chemical affinity to biomass textiles, leading to low nano-metal uptake during finishing, significant declines in function, and nano-pollution. Herein, we demonstrate a strategy to transform metal (Ag, Au, and Pt) NPs into homogenous hyperbranched poly(amide-amine) (HBPAA)-encapsulated NPs showing high water solubility, oxidative resistance, and affinity to biomass materials upon surface capping with HBPAA. The proposed method represents a universal, simple, clean, and efficient self-assembly technology to produce monolayered Ag−Au−Pt ternary-coated biomass textiles. The combination of Ag, Au, and Pt NPs yields a positive potential of approximately +37.12 mV depending on the metal concentration and could simultaneously self-assemble onto natural fibers, including cotton, silk, and wool, through the one-step impregnation of textiles. Increasing the temperature and concentration of the mixture favors the self-assembly process. A mixture of 30−110 mg/L Ag, Au, and Pt NPs could nearly completely anchor onto cotton, silk, and wool textiles after impregnation at 100 °C for 1 h without chemical assistance, thereby indicating the possibility of clean production. As-prepared functional cotton, silk, and wool possessed similarly high antibacterial activities, and a mixture containing over 1500 mg/g NPs inhibited 99% of the Escherichia coli and Staphylococcus aureus in the sample textiles. The developed coating technology is simple, clean, controllable, and broadly applicable; thus, it could be potentially applied in functional textiles.
机译:用于开发纳米​​官能纺织品的电流金属纳米材料主要基于显示含水不稳定性的金属纳米颗粒(NPS),骨料倾向,以及对生物质纺织品的低化学亲和力,导致纳米金属摄取期间的低纳米金属摄取,功能显着下降,和功能纳米污染。在此,我们证明了将金属(Ag,Au和Pt)Nps转化为均质超支化聚(酰胺 - 胺)(HBPAA) - 占状NPS的策略显示出高水溶性,氧化抗性和对表面封盖时的生物质材料的亲和力HBPAA。该方法代表了一种通用,简单,清洁和高效的自组装技术,用于生产单层ag-Au-Pt三元涂层生物质纺织品。 Ag,Au和Pt NPS的组合,取决于金属浓度,产生约+ 37.12mV的正电势,并且可以通过一步浸渍纺织品同时自组装在天然纤维上,包括棉花,丝绸和羊毛。提高混合物的温度和浓度最接受自组装过程。 30-110mg / L Ag,Au和Pt NPS的混合物可以在浸渍100℃下浸渍1小时后,棉,丝和羊毛纺织品几乎完全锚固到1小时内,而没有化学辅助,从而表明清洁生产的可能性。制备的功能性棉,丝绸和羊毛具有同样高的抗菌活性,并且含有超过1500mg / g NPS的混合物抑制了样品纺织品中的99%的大肠杆菌和金黄色葡萄球菌。开发的涂料技术简单,清洁,可控,广泛适用;因此,它可以潜在地应用于功能性纺织品。

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