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Transparent AlON ceramic combined with VO2 thin film for infrared and terahertz smart window

机译:透明的ALON陶瓷结合vo2薄膜,用于红外线和太赫兹智能窗口

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Transparent AlON ceramics are intriguing window materials with excellent mechanical strength and superb optical transparency from the near ultraviolet to the mid-infrared range. However, previous studies focused their investigations in the visible range; therefore, the application of transparent AlON ceramics to tunable windows has yet to be reported. In this work, a VO2 thin film with a characteristic semiconductor-metal phase transition (SMT) was fabricated on a transparent AlON ceramic, which exhibited remarkable tunable switching properties in the infrared and terahertz ranges. The transparent AlON ceramic was prepared by a two-step method, which included carbothermal reduction and pressureless sintering. The resulting ceramic exhibited high transparency of over 70% in the visible-infrared range and a notable THz transmission of 64.5-73.9% at 0.1-1.5 THz. The VO2 thin film was prepared on a transparent AlON ceramic using the sol-gel method and showed excellent optical and electric switching performance. The square resistance variance was close to four orders of magnitude, and an infrared switching ratio of over 40% was obtained. Furthermore, the combined structure showed an efficient THz switching ratio of approximately 70.9%. This study proposes a composite material combined with a transparent ceramic and a phase transition oxide and provides great insights into their application in infrared and terahertz smart windows as well as in switching devices.
机译:透明的ALON陶瓷是有迷恋窗材料,具有优异的机械强度和极好的紫外线光学透明性,从近紫外线到中红外范围。然而,以前的研究重点是他们在可见范围内的调查;因此,透明ALON陶瓷在可调窗口中的应用尚未报告。在这项工作中,在透明的ALON陶瓷上制造具有特征半导体 - 金属相转变(SMT)的VO2薄膜,其在红外和太赫兹范围内表现出显着的可调谐切换性能。通过两步法制备透明的Alon陶瓷,其包括碳热还原和无压烧结。所得陶瓷在可见红外范围内具有超过70%的高透明度,值得注意的THz透射值为0.1-1-1.5至5至5至16至5至5至5至5至5至5至5至7分钟。使用溶胶 - 凝胶法在透明的Alon陶瓷上制备VO2薄膜,并显示出优异的光学和电动开关性能。方形电阻方差接近四个数量级,获得超过40%的红外切换比率。此外,组合结构显示出高约70.9%的高效THz切换比。本研究提出了一种与透明陶瓷和相转变氧化物结合的复合材料,并在其在红外和太赫兹智能窗口以及开关装置中提供了良好的见解。

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