Journal of Materials Science: Materials in Electronics | 2021

Phase Transition Studies on Solution-Processed Vanadium Dioxide Coatings Through Optical Measurements

 
 
 

Abstract


Vanadium dioxide (VO 2 ) exhibits semiconductor to metal transition (SMT) at ≈ 68\xa0°C with optical modulation in the near to deep infrared (IR) region of the solar spectrum. Here we report the fabrication of an inexpensive IR-modulating VO 2 coating that offers vastly superior energy efficiency (11%). The fabrication involved a simple solution processing with single-step annealing for producing the monoclinic-VO 2 phase. We demonstrated the role of annealing parameters on the coating formation and obtained the best regulation performance for annealing at 550\xa0°C for 120\xa0min in 10\xa0Pa inside a tube chamber. The observed thermochromic response was dependent on the structural phase-purity of the coatings. The optimized samples exhibited the highest IR modulation of 56% at 2500\xa0nm, with a hysteresis width of 12.10\xa0°C. The coatings thermal response was investigated by capturing the variation of two energy gaps E g1 and E g2 (20–90\xa0°C), during the heating and cooling cycles. The calculation yielded\u2009~\u200918% infrared regulation efficiency (IRE), one of the highest reported yet\xa0for similar systems. In the end, we modeled the energy saving from these coatings. We presented a theoretical calculation that could verify the generated cooling and provide a rudimentary framework to assess the different energy-loss pathways.

Volume 32
Pages 2627-2638
DOI 10.1007/s10854-020-05030-x
Language English
Journal Journal of Materials Science: Materials in Electronics

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