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首页> 外文期刊>Acta Chimica Slovenica >Deposition of DLC Film on Stainless Steel Substrates Coated by Nickel Using PECVD Method
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Deposition of DLC Film on Stainless Steel Substrates Coated by Nickel Using PECVD Method

机译:PECVD法在镀镍不锈钢基材上沉积DLC膜

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Research on diamond-like carbon (DLC) films has been devoted to find both optimized conditions and characteristics of the deposited films on various substrates. In the present work, we investigate the quality of the DLC films grown on stainless steel substrates using different thickness of the nickel nanoparticle layers on the surface. Nickel nanoparticles were sputtered on the stainless steel substrates at 200 °C by a DC-sputtering system to make a good adherence between DLC coating and steel substrates. Atomic Force Microscopy was used to characterize the surface roughness and distribution function of the nickel nanoparticles on the substrate surface. Diamond like carbon films were deposited on stainless steel substrates coated by nickel using pure acetylene and C2H2/H2 with 15% flow ratio by DC-Plasma Enhanced Chemical Vapor Deposition (PECVD) systems. Microstructural analysis by Raman spectroscopy showed a low intensity ratio I_D/I_G for DLC films by increasing the Ni layer thickness on the stainless steel substrates. Fourier Transforms Infrared spectroscopy (FTIR) evidenced the peaks attributed to C-H bending and stretching vibration modes in the range of 1300-1700 cm~(-1) and 2700-3100 cm~(-1), respectively, in good agreement with the Raman spectroscopy and confirmed the DLC growth in all samples.
机译:已经对类金刚石碳(DLC)膜进行了研究,以发现各种基材上沉积膜的最佳条件和特性。在目前的工作中,我们调查了使用不同厚度的镍纳米粒子层在表面上在不锈钢基板上生长的DLC膜的质量。镍纳米颗粒通过DC溅射系统在200°C的条件下溅射在不锈钢基材上,以在DLC涂层和钢基材之间形成良好的附着力。原子力显微镜用于表征镍纳米粒子在基材表面的表面粗糙度和分布功能。通过直流等离子体增强化学气相沉积(PECVD)系统,使用纯乙炔和C2H2 / H2以15%的流量比将类金刚石碳膜沉积在镀镍的不锈钢基底上。通过拉曼光谱的显微结构分析显示,通过增加不锈钢基板上的镍层厚度,DLC膜的强度比I_D / I_G低。傅立叶变换红外光谱(FTIR)证实了CH弯曲和拉伸振动模式的峰值分别在1300-1700 cm〜(-1)和2700-3100 cm〜(-1)范围内,与拉曼光谱非常吻合光谱并证实所有样品中DLC的生长。

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