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Clay-Chitosan Nanobrick Walls: Completely Renewable Gas Barrier and Flame-Retardant Nanocoatings

机译:粘土-壳聚糖纳米砖墙壁:完全可再生的阻气层和阻燃纳米涂料

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摘要

Thin films prepared via a layer-by-layer (LbL) assembly of renewable materials exhibit exceptional oxygen barrier and flame-retardant properties. Positively charged chitosan (CH), at two different pH levels (pH 3 and pH 6), was paired with anionic montmorillonite (MMT) clay nanoplatelets. Thin-film assemblies prepared with CH at high pH are thicker, because if the low polymer charge density. A 30-bilayer (CH pH 6-MMT) nanocoating (~100 nm thick) reduces the oxygen permeability of a 0.5-mm-thick polylactic acid film by four orders of magnitude. This same coating system completely stops the melting of a flexible polyurethane foam, when exposed to direct flame from a butane torch, with just 10 bilayers (~30 nm thick). Cone calorimetry confirms that this coated foam exhibited a reduced peak heat-release rate, by as much as 52%, relative to the uncoated control. These environmentally benign nanocoatings could prove beneficial for new types of food packaging or a replacement for environmentally persistent antiflammable compounds.
机译:通过可再生材料的逐层(LbL)组装制备的薄膜具有出色的阻氧性和阻燃性。将处于两个不同pH值(pH 3和pH 6)的带正电荷的壳聚糖(CH)与阴离子蒙脱土(MMT)粘土纳米片配对。在高pH下用CH制备的薄膜组件较厚,因为如果聚合物电荷密度低。 30层(CH pH 6-MMT)纳米涂层(约100 nm厚)将0.5毫米厚的聚乳酸薄膜的透氧性降低了四个数量级。当暴露于来自丁烷焊枪的直接火焰中时,只有10个双层(约30 nm厚),这种相同的涂层系统完全停止了柔性聚氨酯泡沫的熔化。锥量热法证实,该涂层泡沫相对于未涂层的对照组,其峰值放热率降低了52%。这些对环境无害的纳米涂层可以证明对新型食品包装或对环境持久的易燃化合物的替代有益。

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