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Stoichiometry And Characterization Of Aluminum Oxynitride Thin Films Grown By Ion-beam-assisted Pulsed Laser Deposition

机译:离子束辅助脉冲激光沉积生长的氧氮化铝薄膜的化学计量和表征

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Oxides are inherently stable in air at elevated temperatures and may serve as wear resistant matrices for solid lubricants. Aluminum oxide is a particularly good candidate for a matrix because it has good diffusion barrier properties and modest hardness. Most thin film deposition techniques that are used to grow alumina require high temperatures to impart crystallinity. Crystalline films are about twice as hard as amorphous ones. Unfortunately, the mechanical properties of most engineering steels are degraded at temperatures above 250-350 ℃. This work is focused on using energetic reactive ion bombardment during simultaneous pulsed laser deposition to enhance film crystallization at low temperatures. Alumina films were grown at several background gas pressures and temperatures, with and without Ar ion bombardment. The films were nearly stoichiometric except for depositions in vacuum. Using nitrogen ion bombardment, nitrogen was incorporated into the films and formed the Al-O-N matrix. Nitrogen concentration could be controlled through selection of gas pressure and ion energy. Crystalline Al-O-N films were grown at 330 ℃ with a negative bias voltage to the substrate, and showed improved hardness in comparison to amorphous films.
机译:氧化物在高温下在空气中固有地稳定,并且可以用作固体润滑剂的耐磨基质。氧化铝是基质特别好的候选材料,因为它具有良好的扩散阻挡性能和适度的硬度。用于生长氧化铝的大多数薄膜沉积技术需要高温才能赋予结晶性。结晶膜的硬度约为非晶膜的两倍。不幸的是,大多数工程钢的机械性能在250-350℃以上的温度下会降低。这项工作的重点是在同时脉冲激光沉积过程中使用高能反应离子轰击,以增强低温下的薄膜结晶。在有和没有Ar离子轰击的情况下,氧化铝膜都是在几种背景气压和温度下生长的。除了在真空中的沉积以外,这些膜几乎是化学计量的。使用氮离子轰击,将氮掺入膜中并形成Al-O-N基体。氮浓度可以通过选择气压和离子能来控制。结晶的Al-O-N薄膜在330℃的负偏压下生长到基板上,与非晶薄膜相比,硬度有所提高。

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