首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >The novel preparation method of high-performance thermochromic vanadium dioxide thin films by thermal oxidation of vanadium-stainless steel co-sputtered films
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The novel preparation method of high-performance thermochromic vanadium dioxide thin films by thermal oxidation of vanadium-stainless steel co-sputtered films

机译:钒不锈钢共溅射膜热氧化制备高性能热致变色二氧化钒薄膜的新方法

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The preparation of high-performance thermochromic vanadium dioxide films and the assurance of its batch-to-batch uniformity is technically difficult since the oxidation number of vanadium ranges from +2 to +5 under various reducing or oxidizing atmospheres at elevated temperatures. In this work, the vanadium dioxide films were fabricated by thermal-oxidation of vanadium and stainless-steel (mainly containing Fe, Cr, Ni) co-sputtered thin films at elevated temperature under air atmosphere. The as-prepared vanadium oxide films were further characterized by four-point probe measurement, ellipsometry, grazing incidence X-ray diffraction (XRD) and X-ray photoelectron spectroscopic (XPS) analysis. Our experiments demonstrated that with the use of an SS target we could efficiently deposit the magnetic atoms (iron and nickel) and nonmagnetic Cr elements into vanadium films in stable plasma conditions. The shift of the main peak of XRD patterns to smaller angles showed that Fe, Cr, and Ni elements were successfully doped into vanadium oxide films. These dopants depressed the vanadium atoms from over-oxidization during the heat treatment. As a result, a noticeable amount of VO2(M) crystalline phase (higher V(+4)/V(+5) ratios) was obtained from the as-prepared films accompanied with the increment of the SS target voltage. Consequently, the formation of V6O13, V3O2, and V2O5 vanadium oxides crystallites was significantly minimized after the thermal-oxidation stage, which gave the as-prepared films outstanding thermochromic-responsive properties. The proposed scheme is proved to be a novel fabrication technique to prepare high-performance thermochromic vanadium dioxide films with the assurance of batch-to-batch uniformity. (C) 2015 Elsevier Ltd. All rights reserved.
机译:高性能热致变色二氧化钒薄膜的制备及其批次间均匀性的保证在技术上是困难的,因为在高温下各种还原或氧化气氛下钒的氧化数范围为+2至+5。在这项工作中,二氧化钒膜是通过在空气气氛下在高温下对钒和不锈钢(主要包含Fe,Cr,Ni)共溅射薄膜进行热氧化而制成的。通过四点探针测量,椭圆偏光,掠入射X射线衍射(XRD)和X射线光电子能谱(XPS)分析进一步表征了制备的钒氧化物薄膜。我们的实验表明,使用SS靶,我们可以在稳定的等离子体条件下将磁性原子(铁和镍)和非磁性Cr元素有效地沉积到钒膜中。 XRD图案主峰向较小角度的偏移表明,Fe,Cr和Ni元素已成功掺杂到氧化钒膜中。这些掺杂剂抑制了钒原子在热处理过程中的过度氧化。结果,伴随SS目标电压的增加,从所制备的膜获得了显着量的VO 2(M)结晶相(更高的V(+4)/ V(+5)比)。因此,在热氧化阶段后,V6O13,V3O2和V2O5钒氧化物微晶的形成显着减少,这使所制备的薄膜具有出色的热致变色响应特性。实践证明,所提出的方案是制备高性能热致变色二氧化钒薄膜的一种新颖的制备技术,同时保证了批次间的均匀性。 (C)2015 Elsevier Ltd.保留所有权利。

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