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首页> 外文期刊>Journal of Materials Science >From Ti-Al- to Ti-Al-N-sputtered 2D materials
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From Ti-Al- to Ti-Al-N-sputtered 2D materials

机译:从Ti-Al-溅射到Ti-Al-N溅射2D材料

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This paper reviews thin films constituted by elements based on the Ti-Al-N system, bearing in mind the role of the condensed phases in the development of structural components and functional devices. In recent decades, the Ti-Al, Ti-N and Al-N nanocrystalline binary systems have rapidly attracted research and industry interest. These systems have revealed a great performance via atomic-level structural control, making it possible to tailor new atomic structures and morphologies suitable in different applications as protective and hard coatings and as thermal/diffusion barriers. The binary phases based on nitrogen were the first to exhibit a wealth of interesting mechanical and electrochemical behaviours. However, more recently the Ti-Al and, particularly, the Ti1 -x Al (x) N thin films have been applied with success in the industry. The purpose of this paper is to compile the master results concerning the production and characterisation of binary and ternary thin films of the Ti-Al-N system using similar deposition strategies. These materials form a good base to analyse the correlation between the chemical composition and the atomic structure, the preferred orientations and the morphology of 2D monolithic materials. The deposition strategies adopted and the thin films' chemical compositions determine the as-deposited structures and, consequently, the mechanical behaviour of the thin films produced, particularly the hardness. In general, an intermediary amorphous stage is observed, i.e., the thin films exhibit a loss of crystallinity in the transition from a saturated solid solution to a new compound.
机译:本文回顾了由基于Ti-Al-N系统的元素构成的薄膜,同时牢记了凝聚相在结构部件和功能器件开发中的作用。在最近的几十年中,Ti-Al,Ti-N和Al-N纳米晶二元体系迅速吸引了研究和行业兴趣。这些系统通过原子级结构控制显示出了出色的性能,可以定制适合不同应用的新原子结构和形态,如保护性和硬质涂层以及热/扩散屏障。基于氮的二元相最先表现出许多有趣的机械和电化学行为。然而,最近,Ti-Al,特别是Ti1-x Al(x)N薄膜已在工业上成功应用。本文的目的是使用相似的沉积策略,汇编有关Ti-Al-N系统二元和三元薄膜的生产和表征的主要结果。这些材料为分析2D整体材料的化学组成与原子结构,首选取向和形态之间的相关性奠定了良好的基础。所采用的沉积策略和薄膜的化学成分决定了沉积后的结构,因此决定了所生产薄膜的机械性能,特别是硬度。通常,观察到中间的无定形阶段,即,薄膜在从饱和固溶体向新化合物的转变中表现出结晶度的损失。

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