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Enhanced Phase Transition Properties of VO2 Thin Films on 6H-SiC (0001) Substrate Prepared by Pulsed Laser Deposition

机译:通过脉冲激光沉积制备的6H-SiC(0001)衬底上的VO2薄膜的增强相变性

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摘要

For growing high quality epitaxial VO2 thin films, the substrate with suitable lattice parameters is very important if considering the lattice matching. In addition, the thermal conductivity between the substrate and epitaxial film should be also considered. Interestingly, the c-plane of hexagonal 6H-SiC with high thermal conductivity has a similar lattice structure to the VO2 (010), which enables epitaxial growth of high quality VO2 films on 6H-SiC substrates. In the current study, we deposited VO2 thin films directly on 6H-SiC (0001) single-crystal substrates by pulsed laser deposition (PLD) and systematically investigated the crystal structures and surface morphologies of the films as the function of growth temperature and film thickness. With optimized conditions, the obtained epitaxial VO2 film showed pure monoclinic phase structure and excellent phase transition properties. Across the phase transition from monoclinic structure (M1) to tetragonal rutile structure (R), the VO2/6H-SiC (0001) film demonstrated a sharp resistance change up to five orders of magnitude and a narrow hysteresis width of only 3.3 °C.
机译:对于高质量的外延VO2薄膜而言,如果考虑晶格匹配,具有合适的晶格参数的基板非常重要。另外,还应考虑基板和外延膜之间的导热率。有趣的是,具有高导热率的六边形6H-SiC的C平面具有与VO2(010)相似的晶格结构,这使得在6H-SiC基材上能够外延生长高质量的VO2膜。在目前的研究中,我们通过脉冲激光沉积(PLD)直接在6H-SiC(0001)单晶基板上沉积VO2薄膜,并系统地研究了薄膜的晶体结构和表面形态,作为生长温度和膜厚度的功能。通过优化的条件,所获得的外延VO2膜显示出纯的单斜相结构和优异的相变性。穿过从单斜斜肌结构(M1)到四边形金红石结构(R)的转换,VO2 / 6H-SiC(0001)膜显示出尖锐的电阻变化,高达五个数量级,窄滞后宽度仅为3.3°C。

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