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Deposition of nano-crystalline graphite films by cathodic plasma electrolysis

机译:阴极等离子体电解沉积纳米晶石墨膜

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摘要

Atmospheric pressure plasma deposition of nano-crystalline graphite films on titanium substrates from a predominantly ethanolic liquid phase was carried out under varying applied voltage. A thorough study of the plasma electrolytic deposition mechanisms has been performed. The investigation of the composition, structural properties, and the morphology of these graphite coatings have been performed by visible and ultraviolet Raman spectroscopy, X-ray Photoelectron Spectroscopy, Scanning Electron Microscopy and X-ray elemental microanalysis. The experimental evidence of the reduction of the work function and the enhancement of the plasma intensity with the presence of the carbon film has been reported. These properties make such nano-crystalline graphite coatings very attractive for the production of inexpensive cold cathodes for electronics and plasma devices.
机译:在变化的施加电压下,从主要为乙醇的液相在钛基底上进行大气压等离子体的纳米晶体石墨膜沉积。已经对等离子体电解沉积机理进行了深入研究。通过可见和紫外拉曼光谱,X射线光电子能谱,扫描电子显微镜和X射线元素微分析对这些石墨涂层的组成,结构性质和形态进行了研究。据报道,随着碳膜的存在,功函数降低和等离子体强度增强的实验证据。这些性能使得这种纳米晶体石墨涂层对于生产用于电子和等离子设备的廉价冷阴极非常有吸引力。

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