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无氟透气聚甲基氢硅氧烷/聚氨酯纤维膜的简易制备及其增强的耐水性能。

Facile fabrication of fluorine-free breathable poly(methylhydrosiloxane)/polyurethane fibrous membranes with enhanced water-resistant capability.

机构信息

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

Key Laboratory of Textile Science & Technology, Ministry of Education, College of Textiles, Donghua University, Shanghai 201620, China; Innovation Center for Textile Science and Technology, Donghua University, Shanghai 200051, China.

出版信息

J Colloid Interface Sci. 2019 Nov 15;556:541-548. doi: 10.1016/j.jcis.2019.08.092. Epub 2019 Aug 26.

Abstract

HYPOTHESIS

Ideal breathable and waterproof materials contain two key elements: hydrophobic matrix and small pore size. Current high-performing breathable waterproof membranes usually employ fluorinated materials to construct hydrophobic surface, which possess alarming potential environmental hazards. Fluorine-free waterproof agents through coating treatment to obtain hydrophobicity suffer from complicated fabrication process and poor durability. Hence, non-fluorinated chemicals incorporated into fibers via a facile one-step electrospinning may be an effective approach to attain durable hydrophobic membranes.

EXPERIMENTS

Poly(methylhydrosiloxane)/polyurethane (PMHS/PU) solution with various PMHS concentration was formulated and electrospun to fibrous membranes, followed by a facile thermal treatment process. A systematic study including morphologies, porous structure, and surface wettability was performed. Breathable waterproof performance and tensile strength were also investigated.

FINDINGS

Added PMHS imparted mighty hydrophobicity to the membranes with a water contact angle of 130.2°, and the subsequent heat treatment greatly improved waterproofness, meanwhile doubled the tensile strength. The resultant membranes exhibited robust hydrostatic pressure of 54.1 kPa, medium breathability of 9.5 kg m d, and excellent stretching stress of 14.1 MPa, which can meet the requirements of general use. The presented strategy on membrane fabrication is feasible and scalable, which may be considered as an effective remedy for environmental protection.

摘要

假设

理想的透气防水材料包含两个关键要素:疏水基质和小孔径。目前高性能透气防水膜通常采用含氟材料构建疏水表面,这会带来严重的潜在环境危害。通过涂层处理获得疏水性的无氟防水剂则存在制造工艺复杂和耐久性差的问题。因此,通过简便的一步静电纺丝将非含氟化学品掺入纤维中可能是获得耐用疏水性膜的有效方法。

实验

用不同 PMHS 浓度的聚甲基氢硅氧烷/聚氨基甲酸酯 (PMHS/PU) 溶液进行配方和静电纺丝,制成纤维膜,然后进行简单的热处理。进行了包括形态、多孔结构和表面润湿性的系统研究。还研究了透气防水性能和拉伸强度。

结果

添加 PMHS 使膜具有强大的疏水性,水接触角为 130.2°,随后的热处理大大提高了防水性,同时使拉伸强度增加了一倍。所得膜具有 54.1 kPa 的强大静水压力、9.5 kg m d 的中等透气性和 14.1 MPa 的优异拉伸应力,可满足一般用途的要求。所提出的膜制造策略是可行且可扩展的,可被视为环境保护的有效补救措施。

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