Structural, Morphological and Optical Properties of Electrodeposited Vanadium Oxide Thin Film

Authors

  • R. S. Gaikwad  Micro Services Lead Developer, Mastech Digital at Client PNC, PA
  • S. S. Dhasade  
  • S. B. Patwari  
  • P. M. Kharade  
  • Swati D. Patil  
  • J. V. Thombare  

Keywords:

Electrodeposition, Vanadium Oxide, Thin Films, Optical Properties

Abstract

Vanadium oxide thin film was synthesized by a simple electrodeposition method. Structural and morphological analyses revealed that the deposited vanadium oxide is polycrystalline in nature with flower like nanostructure. Elemental analysis of the synthesized vanadium oxide thin film showed the presence of desired elements in the required stoichiometry. The optical study of the vanadium oxide thin film was carried by means of reflectance spectra. The UV-Visible reflectance study showed that the reflectance of VO thin film is in the range of 15 to 45 %.

References

  1. Y. L. Cheah, N. Gupta, S. S. Pramana, V. Aravindan, G. Wee, M. Srinivasan, Morphology, structure and electrochemical properties of single phase electrospun vanadium pentoxide nanofibers for lithium ion batteries, Journal of Power Sources, 196 (2011) 6465
  2. D. Vernardou, E. Spanakis, G. Kenanakis, E. Koudoumas, N. Katsarakis, Hydrothermal growth of V2O5 photoactive films at low temperatures, Materials Chemistry and Physics, 124 (2010) 319
  3. S. P. Lim, J. D. Long, S. Xu, K. Ostrikov, Nanocrystalline vanadium oxide films synthesized by plasma-assisted reactive rf sputtering deposition, Journal of Physics D: Applied Physics, 40 (2007) 1085
  4. D. Vernardou, M. E. Pemble, D. W. Sheel, The growth of thermochromic VO2 films on glass by atmospheric-pressure CVD: a comparative study of precursors, CVD methodology, and substrates, Chemical Vapor Deposition, 12 (2006) 263
  5. Y. Muraoka, Z. Hiroi, Metal–insulator transition of VO2 thin films grown on TiO2 (001) and (110) substrates, Applied Physics Letters, 80 (2002) 583
  6. J. Livage, Vanadium pentoxide gels, Chemistry of Materials, 3 (1991) 578
  7. S. Boukhalfa, K. Evanoff, G. Yushin, Atomic layer deposition of vanadium oxide on carbon nanotubes for high-power supercapacitor electrodes, Energy & Environmental Science, 5 (2012) 6872
  8. C. H. Lai, C. K. Lin, S. W. Lee, H. Y. Li, J. K. Chang, M. J. Deng, Nanostructured Na-doped vanadium oxide synthesized using an anodic deposition technique for supercapacitor applications, Journal of Alloys and Compounds, 536 (Suppl. 1) (2012) S428
  9. Y. Zhang, J. Zheng, Y. Zhao, T. Hu, Z Gao, C Meng, Fabrication of V2O5 with various morphologies for high-performance electrochemical capacitor, Applied Surface Science, 377 (2016) 385
  10. J. D. Xie, H. Y. Li, T. Y. Wu, J. K. Chang, Y. A. Gandomi, Electrochemical energy storage of nanocrystalline vanadium oxide thin films prepared from various plating solutions for supercapacitors, Electrochimica Acta, 273 (2018) 257
  11. N. M. A Alghafour, N. M. Ahmed, Z. Hassan, S. M. Mohammad, Influence of solution deposition rate on properties of V2O5 thin films deposited by spray pyrolysis technique, AIP Conference Proceedings, 1756(2016) 090010
  12. H. Wu, K. Lian, Vanadium oxide electrode synthesized by electroless deposition for electrochemical capacitors, Journal of Power Sources, 271 (2014) 534
  13. X. Sui, Y. Huang,T. Han, X. Zeng, Analysis on the influential factors of Cu2+ electrodeposition, AIP Conference Proceedings, 1829 (2017) 020042
  14. M. Nazemiyan, Y. S. Jalili, Record low temperature Mo doped V2O5 thermochromic thin films for optoelectronic applications, AIP Advances, 3 (2013) 112103
  15. M. M. El-Nahass, H. M. Zeyada, M. S. Aziz, N. A. El-Ghamaz, Structural and optical properties of thermally evaporated zinc phthalocyanine thin films, Optical Materials, 27 (2004) 491

Downloads

Published

2018-10-30

Issue

Section

Research Articles

How to Cite

[1]
R. S. Gaikwad, S. S. Dhasade, S. B. Patwari, P. M. Kharade, Swati D. Patil, J. V. Thombare, " Structural, Morphological and Optical Properties of Electrodeposited Vanadium Oxide Thin Film, International Journal of Scientific Research in Science and Technology(IJSRST), Online ISSN : 2395-602X, Print ISSN : 2395-6011, Volume 4, Issue 10, pp.548-552, September-October-2018.