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Highly Efficient Wettability Control via Three-Dimensional (3D) Suspension of Titania Nanoparticles in Polystyrene Nanofibers

机译:通过三维(3D)悬浮二氧化钛纳米颗粒在聚苯乙烯纳米纤维中的高效润湿性控制

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Electrospinning is a simple and highly versatile method for the large-scale fabrication of polymeric nanofibers. Additives or fillers can also be used to fimctionalize the nanofibers for use in specific applications. Herein, we demonstrate a novel and efficient way to fabricate super-hydrophobic to hydrophilic tunable mats with the combined use of electrospinning and electrospraying that may be suitable for mass production on the merits of rapid deposition. The tunable nanocomposite mats were comprised of hydrophobic Dolvstvrene nanofibers and hvdroDhilic titania nanoDarticles. When the electrical conductivity of the electrospinning solution was increased, the surface morphology of the mats changed noticeably from a bead-on-string structure to an almost bead-free structure. Polystyrene (PS)-titania nanocomposite mats initially yielded a static water contact angle as high as 140° ± 3°. Subsequently exposing these mats with relatively weak ultraviolet irradiation (/I = 365 nm, I = 0.6 mW/cm2) for 2 h, the unique 3D suspension of the photoactive titania nanoparticles maximized the hydrophilic performance of the mats, reducing the static water contact angle to as low as 26° ± 2°. The tunable mats were characterized by scanning electron microscopy (SEM), static water contact angle (WCA) measurements, and energy-dispersive X-ray spectroscopy (EDX). Our findings confirmed that the tunable mats fabricated by the simultaneous implementation of electrospraying and electrospinning had the most efficient ultraviolet (UV)-driven wettability control in terms of cost-effectiveness. Well-controlled tunable hydrophobic and hydrophilic mats find potential applications in functional textiles, environmental membranes, biological sensors, scaffolds, and transport media.
机译:电纺丝是用于大规模制造聚合物纳米纤维的一种简单且用途广泛的方法。添加剂或填料也可用于功能化纳米纤维以用于特定应用。在本文中,我们展示了一种新颖而有效的方法,可结合静电纺丝和电喷涂的组合使用来制造超疏水性至亲水性可调垫,这些优点可能适合于快速沉积的优点。可调纳米复合材料垫由疏水性Dolvstvrene纳米纤维和hvdroDhilic二氧化钛纳米颗粒组成。当静电纺丝溶液的电导率增加时,垫的表面形态从串珠状结构变为几乎无珠状结构显着变化。聚苯乙烯(PS)-二氧化钛纳米复合材料垫最初产生的静态水接触角高达140°±3°。随后将这些垫子用相对弱的紫外线照射(/ I = 365 nm,I = 0.6 mW / cm2)暴露2 h,光敏性二氧化钛纳米颗粒的独特3D悬浮液使垫子的亲水性能最大化,从而降低了静态水接触角低至26°±2°。通过扫描电子显微镜(SEM),静态水接触角(WCA)测量和能量色散X射线光谱(EDX)表征可调垫。我们的发现证实,在成本效益方面,同时实施电喷涂和静电纺丝制成的可调毡具有最有效的紫外线(UV)驱动的润湿性控制。控制良好的可调疏水和亲水垫在功能性纺织品,环境膜,生物传感器,支架和运输介质中具有潜在的应用。

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