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使用等离子体技术制备的碳氟化合物薄膜表面性质的研究。

Investigation of Surface Properties of Fluorocarbon Films Produced Using Plasma Techniques.

作者信息

Jung Se-Bi, Cho Youn-Jeong, Lee Jihye, Lee Kang-Bong, Lee Yeonhee

机构信息

Advanced Analysis Center, Korea Institute of Science and Technology, Seoul 02792, Korea.

Green City Technology Institute, Korea Institute of Science and Technology, Seoul 02792, Korea.

出版信息

J Nanosci Nanotechnol. 2018 Sep 1;18(9):6288-6293. doi: 10.1166/jnn.2018.15645.

Abstract

Different fluorocarbon thin films were deposited on Si substrates using two different plasma polymerization methods. Fluorine-containing hydrophobic thin films were obtained using inductively coupled plasma (ICP) and capacitively coupled plasma (CCP) with a mixture of fluorocarbon precursors (C2F6, C3F8, or c-C4F8) and an unsaturated hydrocarbon (C2H2). Different process parameters for plasma polymerization (e.g., processing time) were used to generate various fluorocarbon thin films. The hydrophobic properties and mechanical properties of the new products were measured using a profilometer, water contact angle measurements, pencil hardness, and a 90° peel test. The chemical compositions of the fluorocarbon thin films were characterized using X-ray photoelectron spectroscopy (XPS) and Fourier transform infrared spectroscopy (FT-IR). The water contact angle results showed that the ICP technique provides a more hydrophobic surface compared to the CCP technique. XPS and FT-IR analyses indicated that the ICP technique generated more fluorine-related functional groups (i.e., CF-CFn, CF2, and CF3) in the surface region, while the CCP technique produced fewer fluorine-containing functional groups. However, the fluorocarbon thin films produced using the CCP technique showed greater adhesive strength than did the fluorocarbon thin films produced using the ICP technique. These results are useful to establish the optimal condition for the fabrication of fluorocarbon films and to develop the device in bio-sensing applications.

摘要

使用两种不同的等离子体聚合方法,在硅衬底上沉积了不同的碳氟化合物薄膜。通过电感耦合等离子体(ICP)和电容耦合等离子体(CCP),以碳氟化合物前驱体(C2F6、C3F8或环丁烷八氟)与不饱和烃(C2H2)的混合物,获得了含氟疏水薄膜。采用不同的等离子体聚合工艺参数(如处理时间)来制备各种碳氟化合物薄膜。使用轮廓仪、水接触角测量、铅笔硬度测试和90°剥离试验,对新产品的疏水性能和机械性能进行了测量。利用X射线光电子能谱(XPS)和傅里叶变换红外光谱(FT-IR)对碳氟化合物薄膜的化学成分进行了表征。水接触角结果表明,与CCP技术相比,ICP技术能提供更疏水的表面。XPS和FT-IR分析表明,ICP技术在表面区域产生了更多与氟相关的官能团(即CF-CFn、CF2和CF3),而CCP技术产生的含氟官能团较少。然而,使用CCP技术制备的碳氟化合物薄膜比使用ICP技术制备的碳氟化合物薄膜具有更高的粘合强度。这些结果有助于确定碳氟化合物薄膜制备的最佳条件,并开发生物传感应用中的器件。

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