4.6 Article

Low pressure thermal annealed fabrication of VO2 on glass with excellent optical properties

期刊

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.mssp.2021.105658

关键词

VO2; Low pressure annealed; Sputtered thin film; Smart windows

资金

  1. National Natural Science Foundation of China [62004140]
  2. Major Project of Tianjin Science and Technology [18ZXJMTG00230]
  3. Tianjin Natural Science Foundation [14JCZDJC31500, 18JCQNJC72700, 18JCZDJC99800, 17JCTPJC53100]
  4. Leading Academic Talents in Tianjin, National Undergraduate Innovation and Entrepreneurship Training Program [201910060034]
  5. Science and Technology Development Fund Program of Universities of Tianjin [2017KJ250]
  6. Key Program of Tianjin Science and Technology Development Plan [18YFYSZC00180]
  7. Tianjin Science and Technology Foundation [17ZXZNGX00090]

向作者/读者索取更多资源

This study successfully deposited VO2 on glass through low pressure annealed metal vanadium thin film, demonstrating large grain sizes and a lower phase transition temperature. The VO2 films showed excellent thermochromic performance, making them suitable for thermochromic devices.
In this study, VO2 was deposited on glass through low pressure annealed metal vanadium thin film. The crystal structure, surface morphology and optical transmittance property of the film were characterized by X-ray diffraction, scanning electron microscopy and UV/VIS/NIR spectrophotometer, respectively. When the film thickness is higher than 88 nm, XRD showed that the deposited films appears only at 27.92. indexed to VO2 (011). The calculated grain sizes of VO2 increased from 33.6 nm to 39.2 nm with the increasing of film thickness. The thermal hysteresis showed that the phase transition temperature is in a range of 53-58 degrees C, which is much lower than that of single crystal VO2 (68 degrees C). In addition, the films exhibit the optimal thermochromic performance with the luminous transmittance of 48.2% and the solar modulation of 6.7%. This method revealed the facile fabrication of large scale high performance VO2 on glass for thermochromic based devices.

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