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ELECTRICAL PROPERTIES OF CR/CRN NANO-MULTILAYERS PRODUCED BY THE UNBALANCED MAGNETRON SPUTTERING TECHNIQUE

机译:非平衡磁控溅射技术制备的CR / CRN纳米多层膜的电学性能

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Chromium nitride (CrN) films have been applied to several steels as protective coatings against wear and corrosion due to their excellent mechanical properties and corrosion resistance, and in the electronic field these films are commonly used due to their low electrical resistivity. However, it has been found that multilayers combining metal/ceramic films could enhance mechanical and electrical properties compared with their monolayer counterparts, due to the higher amount and interaction between interfaces. In this work, Cr/CrN nano-multilayers have been produced through the unbalanced magnetron sputtering technique with three different degrees of unbalance, in order to study the influence of this parameter on electrical properties. Cr/CrN multilayers with approximately 1 ?m of total thickness and a bilayer period (?) of 200 nm, 100 nm, and 20 nm were produced at room temperature on H13 steel and silicon (100); and their microstructure and electrical properties as a function of the magnetic field were evaluated. The phase formation was characterized through x-ray diffraction, and results presented (111) and (200) preferred orientations for all the multilayers. Cross section images were obtained through scanning electron microscopy and a multilayer structure can be clearly seen.
机译:氮化铬(CrN)膜由于其优异的机械性能和耐蚀性而已被应用于几种钢作为抗磨损和腐蚀的防护涂层,并且由于其低电阻率,这些膜在电子领域得到了普遍使用。然而,已经发现结合金属/陶瓷膜的多层与它们的单层对应物相比可以提高机械和电性能,这是由于界面之间的量和相互作用更高。在这项工作中,Cr / CrN纳米多层膜是通过不平衡磁控溅射技术制备的,具有三种不同的不平衡度,以研究该参数对电性能的影响。在室温下,在H13钢和硅(100)上生产出总厚度约为1?m,双层周期(?)为200 nm,100 nm和20 nm的Cr / CrN多层膜;并评估了它们的微观结构和电性能随磁场的变化。通过X射线衍射表征相形成,并且结果给出了所有多层的(111)和(200)优选取向。通过扫描电子显微镜获得横截面图像,并且可以清楚地看到多层结构。

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