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Characterization of titanium hydride film after long-term air interaction: SEM, ARXPS and AES depth profile studies

机译:长期空气相互作用后氢化钛膜的表征:SEM,ARXPS和AES深度分布研究

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Thin titanium hydride (TiHy) films are compared with thin titanium films after analysis using a combination of scanning electron microscopy (SEM), Auger electron spectroscopy (AES) and angle-resolved x-ray photoelectron spectroscopy (ARXPS), The TiHy films were prepared under ultrahigh vacuum conditions by precisely controlled hydrogen sorption at 298 It on Ti films evaporated onto a glass substrate, Analysis was performed in separate systems after long-term exposure of the films to air, Scanning electron microscopy analysis revealed a grain structure of the TiHy film, with a smaller grain size than the Ti film, Both the surface and bulk regions have been analysed in terms of their chemical composition and elemental distribution. Titanium dioxide was found to be the main chemical compound forming a contamination layer on both the TiHy and Ti film surfaces, Also, significant concentrations of carbon monoxide and hydrocarbon as well as small amounts of nitrogen and titanium carbide were detected, The thickness of the contaminated titanium oxide layer on the TiHy and Ti films was found to be similar to 13 and similar to 20 nm, respectively, Long-term air interaction with the TiHy film leads to bulk penetration of oxygen but not to complete TiHy decomposition. (C) 1998 John Wiley & Sons, Ltd. [References: 37]
机译:使用扫描电子显微镜(SEM),俄歇电子能谱(AES)和角分辨X射线光电子能谱(ARXPS)进行分析后,将氢化钛(TiHy)薄膜与钛薄膜进行比较,制备了TiHy薄膜在超高真空条件下,通过精确控制298的氢吸附,将Ti膜蒸发到玻璃基板上,将膜长期暴露在空气中后在单独的系统中进行分析,扫描电子显微镜分析显示TiHy膜的晶粒结构,其晶粒尺寸小于Ti膜,因此已根据其化学成分和元素分布对表面区域和主体区域进行了分析。发现二氧化钛是在TiHy和Ti膜表面上形成污染层的主要化学化合物。此外,还检测到高浓度的一氧化碳和碳氢化合物以及少量的氮和碳化钛,被污染的厚度发现TiHy和Ti膜上的氧化钛层分别类似于13和20 nm。与TiHy膜的长期空气相互作用导致氧气大量渗透,但没有完成TiHy分解。 (C)1998 John Wiley&Sons,Ltd. [参考:37]

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