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Nanostructured plasma coatings to obtain multifunctional textile surfaces

机译:纳米结构等离子涂层以获得多功能的纺织品表面

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Nanostructured surfaces are of great interest, since they provide a high surface area. A high functionality can thus be obtained by ultrathin coatings. Plasma polymerization of acetylene mixed with ammonia (C2H2/NH3) was used in a regime where both deposition and etching processes took place yielding a nanoporous, crosslinked network with accessible functional groups. These plasma coatings can be used as permanent hydrophilic treatment or for substrate-independent dyeing when deposited on textile fabrics. Increasing color intensity with film thickness proved that accessible amine groups were deposited within a nanoporous hydrocarbon matrix. Using plasma co-sputtering of a silver target, Ag nano particles can be in situ embedded within the growing plasma polymer yielding a well-defined size and distribution of nano particles at the coating surface. Hence, an anti-microbial activity was achieved. Multifunctional textile surfaces can thus be obtained by adjusting combined properties such as wettability, functional group density as well as anti-bacterial and bio-responsive surfaces. Scale-up of these combined plasma processes is enabled by control of plasma chemistry regarding energy input into the plasma zone and plasma physics by surface interaction with energetic particles. (C) 2006 Elsevier B.V. All rights reserved.
机译:纳米结构的表面具有很大的表面积,因此备受关注。因此可以通过超薄涂层获得高功能性。乙炔与氨(C2H2 / NH3)混合的等离子体聚合反应用于沉积和蚀刻过程均产生具有可访问官能团的纳米多孔,交联网络的体系中。当沉积在纺织品上时,这些等离子涂层可用作永久性亲水处理或用于独立于基材的染色。随着膜厚度的增加,颜色强度证明可及的胺基团沉积在纳米多孔烃基体内。使用银靶的等离子体共溅射,可以将Ag纳米颗粒原位嵌入正在生长的等离子体聚合物中,从而在涂层表面产生明确定义的尺寸和分布的纳米颗粒。因此,获得了抗微生物活性。因此,可以通过调节组合特性(如润湿性,官能团密度以及抗菌和生物响应性表面)来获得多功能纺织品表面。通过控制与化学有关的能量(通过与高能粒子的表面相互作用,输入到等离子区的能量和等离子物理),可以实现这些组合的等离子工艺的放大。 (C)2006 Elsevier B.V.保留所有权利。

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