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Correlation study of nanocrystalline carbon doped thin films prepared by a thermionic vacuum arc deposition technique

机译:纳米晶碳掺杂薄膜通过热离子真空弧沉积技术的相关研究

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摘要

The synthesis of Ag, Mg and Si nanocrystalline, embedded in a hydrogen-free amorphous carbon (a-C) matrix, deposited by a high vacuum and free buffer gas technique, were investigated. The films with compact structures and extremely smooth surfaces were prepared using the thermionic vacuum arc method in one electron gun configuration, on glass and silicon substrates. The surface morphology and wettability of the obtained multifunctional thin films were investigated using transmission electron microscopy (TEM), scanning electron microscopy (SEM) and free surface energy (FSE) by See System. The results from the TEM measurements show how the Ag, Mg and Si interacted with carbon and the influence these materials have on the thin film structure formation and the grain size distribution. SEM correlated with EDX results reveal a very precise comparative study, regarding the quantity of the elements that morphed into carbides nanostructures. Also, the FSE results prove how different materials in combination with carbon can make changes to the surface properties.
机译:研究了通过高真空和游离缓冲气体技术沉积的无氢非晶碳(A-C)基质中的Ag,Mg和Si纳米晶体的合成。在玻璃和硅基板上,使用一种电子枪配置中的热离子真空电弧法制备具有紧凑结构和极光表面的薄膜。使用透射电子显微镜(TEM),扫描电子显微镜(SEM)和自由表面能量(FSE)研究所得多功能薄膜的表面形态和润湿性。 TEM测量结果表明,Ag,Mg和Si如何与碳相互作用,并且这些材料对薄膜结构形成和晶粒尺寸分布具有碳。 SEM与EDX结果相关,揭示了一种非常精确的比较研究,关于变形为碳化物纳米结构的元素的量。此外,FSE结果证明了不同的材料如何与碳组合可以改变表面性质。

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