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Layer-by-layer assembled hydrophobic coatings for cellulose nanofibril films and textiles, made of polylysine and natural wax particles

机译:由聚赖氨酸和天然蜡颗粒制成的用于纤维素纳米原纤维膜和纺织品的逐层组装疏水涂层

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摘要

Herein we present a simple method to render cellulosic materials highly hydrophobic while retaining their breathability and moisture buffering properties, thus allowing for their use as functional textiles. The surfaces are coated via layer-by-layer deposition of two natural components, cationic poly-l-lysine and anionic carnauba wax particles. The combination of multiscale roughness, open film structure, and low surface energy of wax colloids, resulted in long-lasting superhydrophobicity on cotton surface already after two bilayers. Atomic force microscopy, interference microscopy, scanning electron microscopy and X-ray photoelectron spectroscopy were used to decouple structural effects from changes in surface energy. Furthermore, the effect of thermal annealing on the coating was evaluated. The potential of this simple and green approach to enhance the use of natural cellulosic materials is discussed.
机译:本文中,我们提出一种简单的方法来使纤维素材料具有高度疏水性,同时又保持其透气性和水分缓冲特性,从而使其可用作功能纺织品。通过两种天然组分的阳离子-聚-赖氨酸和阴离子巴西棕榈蜡颗粒的逐层沉积来涂覆表面。多尺度粗糙度,开膜结构和蜡胶体的低表面能的结合,使得棉花在经过两个双层之后已经在其表面产生了持久的超疏水性。原子力显微镜,干涉显微镜,扫描电子显微镜和X射线光电子能谱用于将结构效应与表面能的变化分开。此外,评估了热退火对涂层的影响。讨论了这种简单而绿色的方法增强天然纤维素材料使用的潜力。

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