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Tailoring of structure formation and phase composition in reactively sputtered zirconium oxide films using nitrogen as an additional reactive gas

机译:使用氮气作为附加反应性气体量身定制反应溅射氧化锆薄膜中的结构形成和相组成

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摘要

The structure of ZrO(2) films has been controlled during reactive sputtering in an argon/oxygen atmosphere by adding an amount of nitrogen gas to the process. Depending on the deposition conditions, amorphous, cubic, or monoclinic films have been obtained without any additional substrate heating. The resulting film structure is explained in terms of the control of fast negative oxygen ions generated at the target surface and accelerated toward the growing film. Furthermore, the nitrogen addition leads to a pronounced stabilization of the plasma discharge and fewer arcing events, while the incorporation of nitrogen atoms in the growing film is very small.
机译:ZrO(2)膜的结构已在氩气/氧气气氛中的反应溅射过程中通过向工艺中添加一定量的氮气进行了控制。根据沉积条件,无需任何额外的基板加热即可获得非晶,立方或单斜晶膜。通过控制在靶表面产生并朝着生长的膜加速的快速负氧离子来解释所得的膜结构。此外,氮的添加导致等离子体放电的显着稳定和更少的电弧放电事件,而在生长膜中氮原子的掺入非常小。

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