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用于防水透气应用的电纺聚丙烯腈膜的无氟氨基硅氧烷的强力超疏水改性。

Robust Fluorine-Free Superhydrophobic Amino-Silicone Oil/SiO Modification of Electrospun Polyacrylonitrile Membranes for Waterproof-Breathable Application.

机构信息

Key Laboratory of Textile Science & Technology, Ministry of Education, College of Textiles, Donghua University , Shanghai 201620, China.

Nanofibers Research Center, Modern Textile Institute, Donghua University , Shanghai 200051, China.

出版信息

ACS Appl Mater Interfaces. 2017 May 3;9(17):15139-15147. doi: 10.1021/acsami.7b02594. Epub 2017 Apr 21.

Abstract

Superhydrophobic waterproof-breathable membranes have attracted considerable interest owing to their multifunctional applications in self-cleaning, anti-icing, anticorrosion, outdoor tents, and protective clothing. Despite the researches pertaning to the construction of superhydrophobic functional membranes by nanoparticle finishing have increased drastically, the disconnected particle component is easy to fall off from the membranes under deformation and wear conditions, which has restricted their wide use in practice. Here, robust superhydrophobic microporous membranes were prepared via a facile and environmentally friendly strategy by dip-coating amino-silicone oil (ASO) onto the electrospun polyacrylonitrile (PAN) membranes, followed by SiO nanoparticles (SiO NPs) blade coating. Compared with hydrophilic PAN membranes, the modified membranes exhibited superhydrophobic surface with an advancing water contact angle up to 156°, after introducing ASO as low surface energy substance and SiO NPs as filler to reduce the pore size and construct the multihierarchical rough structure. Varying the concentrations of ASO and SiO NPs systematically, the PAN electrospun membranes modified with 1 wt % ASO and 0.1 wt % SiO NPs were endowed with good water-resistance (74.3 kPa), relative low thermal conductivity (0.0028 W m K), modest vapor permeability (11.4 kg m d), and air permeability (20.5 mm s). Besides, the inorganic-organic hybrid coating of ASO/SiO NPs could maintain its superhydrophobicity even after 40 abrasion cycles. The resulting membranes were found to resist variations on the pH scale from 0 to 12, and retained their water repellent properties when exposed to harsh acidic and alkali conditions. This facile fabrication of durable fluorine-free superhydrophobic membranes simultaneous with good waterproof-breathable performance provides the advantages for potential applications in self-cleaning materials and versatile protective clothing.

摘要

超疏水防水透气膜因其在自清洁、抗结冰、防腐、户外帐篷和防护服等多功能应用中引起了相当大的兴趣。尽管通过纳米粒子整理构建超疏水功能膜的研究急剧增加,但在变形和磨损条件下,不连续的颗粒组件容易从膜上脱落,这限制了它们在实际中的广泛应用。在这里,通过将氨基硅油 (ASO) 浸涂到静电纺聚丙稀腈 (PAN) 膜上,然后用 SiO 纳米粒子 (SiO NPs) 刮刀涂覆,通过一种简单且环保的策略制备了坚固的超疏水微孔膜。与亲水 PAN 膜相比,经过 ASO 作为低表面能物质和 SiO NPs 作为填充剂引入以减小孔径并构建多级粗糙结构后,改性膜表现出超疏水表面,水接触角高达 156°。通过系统地改变 ASO 和 SiO NPs 的浓度,用 1wt%的 ASO 和 0.1wt%的 SiO NPs 改性的 PAN 静电纺丝膜具有良好的防水性(74.3kPa)、相对较低的导热系数(0.0028WmK)、适中的蒸汽透过率(11.4kgmd)和空气透过率(20.5mm s)。此外,即使经过 40 次磨损循环,ASO/SiO NPs 的无机-有机杂化涂层仍能保持其超疏水性。研究发现,这种膜在 pH 值从 0 到 12 的范围内具有耐酸碱性,并且在暴露于恶劣的酸性和碱性条件下仍保持其防水疏油性能。这种简单的制备方法同时具有持久的无氟超疏水性能和良好的防水透气性能,为自清洁材料和多功能防护服的潜在应用提供了优势。

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