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Large-scale thick self-assembled nacre-mimetic brick-walls as fire barrier coatings on textiles

机译:大型厚实的自组装的类似珍珠质的砖墙作为纺织品上的防火涂料

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摘要

Highly loaded polymer/clay nanocomposites with layered structures are emerging as robust fire retardant surface coatings. However, time-intensive sequential deposition processes, e.g. layer-by-layer strategies, hinders obtaining large coating thicknesses and complicates an implementation into existing technologies. Here, we demonstrate a single-step, water-borne approach to prepare thick, self-assembling, hybrid fire barrier coatings of sodium carboxymethyl cellulose (CMC)/montmorillonite (MTM) with well-defined, bioinspired brick-wall nanostructure, and showcase their application on textile. The coating thickness on the textile is tailored using different concentrations of CMC/MTM (1–5 wt%) in the coating bath. While lower concentrations impart conformal coatings of fibers, thicker continuous coatings are obtained on the textile surface from highest concentration. Comprehensive fire barrier and fire retardancy tests elucidate the increasing fire barrier and retardancy properties with increasing coating thickness. The materials are free of halogen and heavy metal atoms, and are sourced from sustainable and partly even renewable building blocks. We further introduce an amphiphobic surface modification on the coating to impart oil and water repellency, as well as self-cleaning features. Hence, our study presents a generic, environmentally friendly, scalable, and one-pot coating approach that can be introduced into existing technologies to prepare bioinspired, thick, fire barrier nanocomposite coatings on diverse surfaces.
机译:具有层状结构的高负载聚合物/粘土纳米复合材料正在作为坚固的阻燃表面涂料出现。然而,时间密集的顺序沉积工艺例如逐层策略阻碍了获得较大的涂层厚度,并使现有技术的实现复杂化。在这里,我们演示了一步一步的水性方法,以制备具有明确定义的,受生物启发的砖墙纳米结构的羧甲基纤维素钠(CMC)/蒙脱土(MTM)厚的自组装混合防火涂料,并展示它们在纺织品上的应用。纺织品上的涂层厚度是通过在涂层浴中使用不同浓度的CMC / MTM(1-5%wt%)定制的。当较低的浓度赋予纤维保形涂层时,从最高浓度在织物表面获得较厚的连续涂层。全面的防火和阻燃测试阐明了随涂层厚度增加而增加的防火和阻燃性能。这些材料不含卤素和重金属原子,并且来自可持续的甚至部分可再生的建筑材料。我们进一步在涂层上引入两性表面改性,以赋予拒油和拒水性以及自清洁功能。因此,我们的研究提出了一种通用,环保,可扩展和一锅法的涂料方法,可以将其引入现有技术中,以在各种表面上制备具有生物启发性的,厚实的,防火的纳米复合涂料。

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