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Development of superhydrophobic surface on glass substrate by multi-step atmospheric pressure plasma treatment

机译:多步常压等离子体处理在玻璃基板上形成超疏水表面

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Superhydrophobic surface was prepared on a glass by helium based CH4 and C4F8 atmospheric pressure plasmas, and its water wettability was investigated by a water droplet contact angle method. The water droplet spread over on the untreated glasses that showed the initial hydrophilic property of the glass surface. Then, the static contact angles became about 85 degrees and 98 degrees after a single step CH4 plasma treatment and a single step C4F8 plasma treatment, respectively. The contact angle was remarkably increased to 152 degrees, indicating a superhydrophobic property, after a sequential multi-step CH4 and C4F8 plasma treatment. From the X-ray photoelectron spectroscopy and the field emission scanning electron microscope measurements, it was found that the physical morphologies and the chemical compositions were depending on the substrate materials, which were important factors for the superhydrophobicity. (C) 2014 Elsevier B.V. All rights reserved.
机译:通过氦基CH4和C4F8大气压等离子体在玻璃上制备超疏水表面,并通过水滴接触角法研究其水润湿性。水滴散布在未处理的玻璃上,显示出玻璃表面的初始亲水性。然后,在单步CH4等离子体处理和单步C4F8等离子体处理之后,静态接触角分别变为约85度和98度。经过连续的多步CH4和C4F8等离子体处理后,接触角显着增加至152度,表明具有超疏水性。通过X射线光电子能谱和场发射扫描电子显微镜的测量,发现物理形态和化学组成取决于基底材料,这是超疏水性的​​重要因素。 (C)2014 Elsevier B.V.保留所有权利。

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