Luminous transmittance and phase transition temperature of VO2:Ce thin films prepared by DC reactive magnetron sputtering

Authors

  • S Ambonisye Physics Unit, Faculty of Science, Dar es Salaam University College of Education, P.O. Box 2329, Dar es Salaam, Tanzania
  • M E Samiji Department of Physics, College of Natural and Applied Sciences, University of Dar es Salaam, Tanzania
  • N R Mlyuka Department of Physics, College of Natural and Applied Sciences, University of Dar es Salaam, Tanzania

Keywords:

vanadium dioxide, luminous transmittance, . Press 'enter' after each term.

Abstract

Vanadium dioxide (VO2) and cerium-doped vanadium dioxide (VO2:Ce) thin films were prepared by DC reactive magnetron sputtering from vanadium metallic target and V-Ce alloy targets. Luminous transmittance and phase transition temperatures of the films were studied. The Shimadzu SOLIDSPEC-3700 DUV-VIS-NIR spectrophotometer was used to measure the transmittance and reflectance of the films. The phase transition temperature (τc) of the films was obtained from both the transmittance and sheet resistance against temperature curves. A change in sheet resistance of 2 to 3 orders of magnitude was observed for both undoped and Ce-doped VOfilms. Comparison between undoped and doped VO2 films revealed that cerium inclusion altered both the visible and infrared transmittance of VO2 thin films. Luminous transmittance was slightly enhanced while τcwas slightly depressed by cerium inclusion in VO2. A two-step increase in transmittance observed in the cooling loop in pure VO2 was found to be suppressed by cerium inclusion

vanadium dioxide, luminous transmittance, phase transition temperature

 

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Published

30-09-2015

How to Cite

Ambonisye, S., Samiji, M. E., & Mlyuka, N. R. (2015). Luminous transmittance and phase transition temperature of VO2:Ce thin films prepared by DC reactive magnetron sputtering. Tanzania Journal of Science, 41(1), 1–7. Retrieved from https://tjs.udsm.ac.tz/index.php/tjs/article/view/580

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