In this study, vanadium oxide films were produced in the vanadium pentoxide (V2O5) films phase as an alternative electrochromic layer for electrochromic devices by ultrasonic spray pyrolysis technique at 300°C. The V2O5 films were subjected to heat treatment at different temperatures (400°C–450°C–500°C) and the ellipsometric, structural, morphological, optical, and electrical properties of the films were investigated. The optical parameters of the V2O5 films were calculated by different theoretical methods and compared with the ellipsometric results. The average thickness and refractive index values are 172 nm and 2.29, respectively. The V2O5 films showed high optical absorbance in the visible region and bandgap energy values ranged from 2.10 to 2.44 eV. The resistivity and roughness of the films decreased. The average roughness was determined to be 45 nm on average. These results suggest that V2O5 phase films, whose physical properties are improved by annealing without phase change, can be considered as promising electrochromic layers for electrochromic devices applications.
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December 2024
Research Article|
November 26 2024
Spray pyrolysis–derived V2O5 thin films as an alternative electrochromic layer for electrochromic devices Available to Purchase
Olcay Gençyılmaz
Olcay Gençyılmaz
Department of Material and Material Processing Technological, Çankırı Karatekin University, Çankırı, Turkey (ogencyilmaz@karatekin.edu.tr)
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Publisher: Emerald Publishing
Received:
July 21 2023
Accepted:
September 09 2024
Online ISSN: 2046-0155
Print ISSN: 2046-0147
Emerald Publishing Limited: All rights reserved
2024
Emerging Materials Research (2024) 13 (4): 322–336.
Article history
Received:
July 21 2023
Accepted:
September 09 2024
Citation
Gençyılmaz O (2024), "Spray pyrolysis–derived V2O5 thin films as an alternative electrochromic layer for electrochromic devices". Emerging Materials Research, Vol. 13 No. 4 pp. 322–336, doi: https://doi.org/10.1680/jemmr.23.00126
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