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A self-modification approach toward transparent superhydrophobic glass for rainproofing and superhydrophobic fiberglass mesh for oil-water separation

机译:一种用于防雨的透明超疏水玻璃和油水分离用超疏水玻璃纤维网的自改性方法

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A method employing one kind of material both for the construction of rough morphology and the chemical modification is called self-modification by us, which has not been reported in fabricating superhydrophobic surfaces so far. In this paper, taking candle soot as an intermediate, we created rough, superhydrophilic and transparent surfaces on glass trough calcination of polydimethylsiloxane (PDMS) at 550 degrees C. Subsequently, a novel chemical vapour deposition (CVD) modification was conducted by heating PDMS at 330 degrees C in air to give the surfaces a water contact angle (WCA) of 170 degrees + 0.5 degrees and a sliding angle (SA) of 0 degrees. This CVD modification is expected to be a valuable way of modification because of its simple operation, low cost and short time consumption. Results indicate that the high temperature calcination and the moderate temperature CVD modification can drastically improve the stability of the surperhydrophobic surfaces through controlling the morphology and the surface chemical composition. The as-prepared glass surfaces are capable of bearing heavy rains, keeping the sight clear in the rain and being used at a high temperature (<400 degrees C) or in water. Besides, superhydrophobic fiberglass mesh was prepared and applied in oil-water separation. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们将一种同时使用一种材料进行粗糙形貌的构造和化学修饰的方法称为自修饰,到目前为止,在制造超疏水表面方面尚未见报道。本文以蜡烛烟灰为中间体,在550℃的聚二甲基硅氧烷(PDMS)的玻璃槽煅烧中创建粗糙,超亲水和透明的表面。随后,通过在700℃下加热PDMS进行了新颖的化学气相沉积(CVD)改性。在空气中330摄氏度时,表面的水接触角(WCA)为170度+ 0.5度,滑动角(SA)为0度。由于其简单的操作,低成本和短时间的消耗,这种CVD改性有望成为一种有价值的改性方法。结果表明,高温煅烧和中温CVD改性可以通过控制形貌和表面化学组成来大大提高超疏水表面的稳定性。准备好的玻璃表面能够承受大雨,在雨中保持视线清晰,并可以在高温(<400摄氏度)或水中使用。此外,制备了超疏水玻璃纤维网,并应用于油水分离。 (C)2015 Elsevier B.V.保留所有权利。

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