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首页> 外文期刊>Journal of Applied Polymer Science >One polymer, one layer, and two opposite functions: Using a pH-switchable polymer to fabricate a hydrophilic-hydrophobic fibrous membrane
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One polymer, one layer, and two opposite functions: Using a pH-switchable polymer to fabricate a hydrophilic-hydrophobic fibrous membrane

机译:一种聚合物,一层和两个相反的功能:使用pH可切换聚合物制备亲水性 - 疏水性纤维膜

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摘要

Thanks to their permissibility of vapor transmitting and resistance to water penetration, hydrophilic-hydrophobic membranes (HHMs) are a critical factor in so many applications. Current strategies focus on electrospinning hybrid layers from two different hydrophilic-hydrophobic polymers. Here, we report a new generation of HHMs by electrospinning one layer of pH-switchable polymers followed by a simple post-treatment. In doing so, a hydrophobic poly(methyl methacrylate)-co-poly(N,N-diethylaminoethylmethacrylate) (PMMA-co-PDEAEMA) membrane is fabricated using the electrospinning method. Then, hydrochloric acid (HCl) vapor is used to convert one face of the membrane to a hydrophilic state. Field emission-scanning electron microscopy, drop test, water contact angle (WCA), moisture management test (MMT), tensile strength, water vapor permeability (WVP), air permeability (AP), and cytotoxicity test were used to characterize the obtained membrane. The results show that by HCl vapor exposure, one side of the membrane gets successfully converted into a hydrophilic state, with the other side still remaining hydrophobic. The drop test and the WCA test showed that the optimal exposure time is only 5 min. This trigger has a small effect on the morphology and, subsequently, on water and air permeability as well as on the mechanical behavior of the membrane. This new generation of membranes can have applications in protective clothing and wound dressing.
机译:由于其允许蒸汽传递和耐水性抗渗透的允许性,亲水 - 疏水膜(HHMS)是如此多的应用中的关键因素。目前的策略专注于来自两种不同亲水 - 疏水聚合物的静电纺丝层。在这里,我们通过静电纺丝一层pH可切换聚合物报告新一代HHM,然后进行简单的处理。在这样做,使用静电纺丝方法制造疏水性聚(甲基丙烯酸甲酯)-CO-聚(N,N-二乙基氨基甲基丙烯酸酯)(PMMA-CO-PDEAMA)膜。然后,使用盐酸(HCl)蒸汽将膜的一张面部转化为亲水状态。场发射扫描电子显微镜,下降试验,水接触角(WCA),水分管理试验(MMT),抗拉强度,水蒸气渗透率(WVP),透气性(AP)和细胞毒性试验表征所获得的膜。结果表明,通过HCl蒸气暴露,膜的一侧成功地转化为亲水状态,另一种侧仍然仍然是疏水性的。跌落试验和WCA测试表明,最佳曝光时间仅为5分钟。这种触发对形态的影响很小,随后,在水和透气性以及膜的力学行为上。这种新一代膜可以具有防护服和伤口敷料的应用。

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