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通过使用钨催化剂的催化化学气相沉积法在不同催化剂温度下制备的聚四氟乙烯薄膜的疏水性能。

Hydrophobic properties of polytetrafluoroethylene thin films fabricated at various catalyzer temperatures through catalytic chemical vapor deposition using a tungsten catalyzer.

作者信息

Cha Jeong Ok, Yeo Seung Jun, Pode Ramchandra, Ahn Jeung Sun

机构信息

Department of Physics, Kyung Hee University, Seoul 130-701, Republic of Korea.

出版信息

J Nanosci Nanotechnol. 2011 Jul;11(7):5829-33. doi: 10.1166/jnn.2011.4416.

Abstract

Using the catalytic chemical vapor deposition (Cat-CVD) method, polytetrafluoroethylene (PTFE) thin films were fabricated on Si(100) substrates at various catalyzer temperatures, using a tungsten catalyzer, and Fourier transform infrared (FTIR) spectroscopy and X-ray photoemission spectroscopy (XPS) were used to confirm the fabrication of the films. An atomic-force microscope (AFM) and a scanning electron microscope (SEM) were employed to study the correlation between the wettability and surface morphology of the samples. It was found that the wettability of the PTFE thin films fabricated via Cat-CVD is strongly correlated with the sizes of the film surfaces' nanoprotrusions, and that superhydrophobic PTFE thin-film surfaces can be easily achieved by controlling the sizes of the nanoprotrusions through the catalyzer temperature. The comparison of the wettability values and surface morphologies of the films confirmed that nanoscale surface roughness enhances the hydrophobic properties of PTFE thin films. Further, the detailed analysis of the films' surface morphologies from their AFM images with the use of the Wenzel and Cassie models confirmed that the nanoscale surface roughness enhanced the hydrophobic property of the PTFE films. Further, the variations of the wettability of the PTFE thin films prepared via Cat-CVD are well explained by the Cassie model. It seems that the increase in the trapping air and the reduction of the liquid-solid contact area are responsible for the superhydrophobicity of the PTFE thin films prepared via Cat-CVD.

摘要

采用催化化学气相沉积(Cat-CVD)方法,以钨为催化剂,在不同的催化剂温度下于Si(100)衬底上制备聚四氟乙烯(PTFE)薄膜,并使用傅里叶变换红外(FTIR)光谱和X射线光电子能谱(XPS)对薄膜的制备进行确认。利用原子力显微镜(AFM)和扫描电子显微镜(SEM)研究样品的润湿性与表面形貌之间的相关性。研究发现,通过Cat-CVD制备的PTFE薄膜的润湿性与薄膜表面纳米凸起的尺寸密切相关,并且通过控制催化剂温度来控制纳米凸起的尺寸,可以轻松实现超疏水的PTFE薄膜表面。薄膜润湿性值和表面形貌的比较证实,纳米级表面粗糙度增强了PTFE薄膜的疏水性能。此外,使用Wenzel模型和Cassie模型对AFM图像中的薄膜表面形貌进行详细分析,证实纳米级表面粗糙度增强了PTFE薄膜的疏水性能。此外,通过Cassie模型很好地解释了通过Cat-CVD制备的PTFE薄膜润湿性的变化。似乎捕获空气的增加和液-固接触面积的减少是通过Cat-CVD制备的PTFE薄膜具有超疏水性的原因。

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