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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Super-hydrophobic 3D printed polysulfone membranes with a switchable wettability by self-assembled candle soot for efficient gravity-driven oil/water separation
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Super-hydrophobic 3D printed polysulfone membranes with a switchable wettability by self-assembled candle soot for efficient gravity-driven oil/water separation

机译:超级疏水3D印花聚砜膜,通过自组装蜡烛烟灰采用可切换润湿性,用于高效的重力驱动的油/水分离

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摘要

The development of super-hydrophobic surfaces for water/oil separation has attracted much interest in fundamental research and industrial applications in recent years. This article proposes a facile method to fabricate super-hydrophobic surfaces on 3D printed polysulfone (PSU) membranes via the coating of candle soot. A 3D printed PSU membrane fabricated by selective laser sintering was applied for the oil/water separation and showed a different wettability on its top surface and bottom surface. The selfassembled candle soot loose network endowed the 3D printed PSU membrane with superhydrophobicity with a water contact angle of 161 degrees and a sliding angle of 5 degrees, preserving an outstanding mechanical stability under sonication and chemical stability in 1 M HCl, 1 M NaOH, 1 M NaCl and hot water. Interestingly, this super-hydrophobic surface could dramatically switch to a super-oleophobic state after being prewetted by water. Ten cycles of switchable oil/water separation were performed, demonstrating a high oil/water separation stability of the dry candle soot coated PSU membrane and the water prewetted candle soot coated PSU membrane. Additionally, the effect of selective laser sintering processing parameters on the structure and performance and the influence of the immersion time on the deposition of candle soot were investigated. Overall, this study provides an efficient, simple and reliable fabrication method for super-hydrophobic surfaces with switchable wettability.
机译:近年来,水/石油分离超级疏水性表面的发展吸引了对基本研究和工业应用的兴趣。本文提出了一种穿着蜡烛烟灰涂层制造3D印刷的聚砜(PSU)膜上的超疏水表面的容易方法。通过选择性激光烧结制造的3D印刷PSU膜用于油/水分离,在其顶表面和底表面上显示出不同的润湿性。自画面的蜡烛烟囱松散网络赋予3D印刷PSU膜,具有161度的水接触角和5度的滑动角度,在1M HCl,1米NaOH,1的化学稳定性下保持出色的机械稳定性。 m nacl和热水。有趣的是,这种超级疏水性表面可以在被水预制后显着切换到超级疏油状态。进行了十个可切换油/水分离的循环,证明了干燥蜡烛涂层涂层PSU膜的高油/水分离稳定性和水预热蜡烛涂层PSU膜。另外,研究了选择性激光烧结加工参数对结构和性能的影响以及浸渍时间对蜡烛烟尘沉积的影响。总体而言,该研究为具有可切换润湿性的超疏水表面提供了一种有效,简单可靠的制造方法。

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