Thermal Annealing Effect on Improved Structural, Morphological, Optical and Electrical Properties of Cu2ZnSnS4 Thin Film

Authors

  • Sandip V. Mahajan  Department of Physics, Shikshan Maharashri Dnyandeo Mohekar College, Kalamb,Osmanabad, Maharashtra, India
  • Sanjay R. Kamable  Department of Physics, Shikshan Maharashri Dnyandeo Mohekar College, Kalamb,Osmanabad, Maharashtra, India
  • Vishwajit R. Mhaske  Department of Botany, Shikshan Maharashri Dnyandeo Mohekar College, Kalamb,Osmanabad, Maharashtra, India
  • Anil D. Adsare  Department of Botany, Arts, Commerce and Science College, Maregaon, Dist. Yavatmal, Maharashtra, India

DOI:

https://doi.org/10.32628/IJSRST.RAMAN2181

Keywords:

Low Cost, CZTS, Absorber, Porous, Solar Cells.

Abstract

Low-cost Cu2ZnSnS4 (CZTS) absorber layer thin films have been prepared by Successive Ionic Layer Adsorption and Reaction method (SILAR). CZTS thin film prepared at room temperature without any toxic components or precursors. After synthesis thin films have annealed at 250

References

  1. N.M. Shinde, C.D. Lokhande, J.H. Kim, Moon. JH. J Photochem Photobiol A 235, 14– 20 (2012).
  2. Z. Seboui, A. Gassoumi, Turki NK. Mat Sci Semicond Process 26, 360–366 (2014).
  3. L. Sun, J. He, H. Kong, F. Yue, P.Yang, J.Chu. Sol Energy Mater Sol Cells 95, 2907–2913 (2011).
  4. P.A. Fernandes, P.M.P. Salomé, A.F. da Cunha, Schubert. B-A. Thin Solid Films 519, 7382–7385 (2010).
  5. J. Ge, Y. Wu, C. Zhang, S. Zuo, J. Jiang, J. Ma, et al. Appl Surf Sci 258, 7250-7254 (2012).
  6. N. Kamoun, H. Bouzouita, B. Rezig. Thin Solid Films 515, 5949–5952 (2007).
  7. T. Todorov, M. Kita, J. Carda, Escribano P. Thin Solid Films 517, 2541-2544 (2009).
  8. H.Katagiri. Thin Solid Films 480–481, 426–432 (2005).
  9. K.Maeda, K.Tanaka, Y.Fukui, H.Uchiki. Sol Energy Mater Sol Cells 95, 2855–2860 (2011).
  10. M. Jiang, Y. Li, R. Dhakal, P. Thapaliya, M. Mastro, J. D. Caldwell, et al. J Photonics Energy 1, 019501-019506 (2011).
  11. A. Fischereder, T. Rath, W. Haas, H. Amenitsch, J. Albering, D. Meischler, et al. Chem Mater 22, 3399–3406 (2010).
  12. H.Araki, A.Mikaduki, Y.Kubo, T. Sato, K.Jimbo, W.S. Maw, et al. Thin Solid Films 517, 1457–1460 (2008).
  13. H. Araki, Y. Kubo, A. Mikaduki, K. Jimbo, W. S. Maw, H. Katagiri, et al. Sol Energy Mater Sol Cells 93, 996–999 (2009).
  14. S. C. Riha, B. A. Parkinson, Prieto AL. J Am Chem Soc 131, 12054–12055 (2009).
  15. A. Wangperawong, J.S. King, S.M. Herron, B.P. Tran, K. Pangan-Okimoto, Bent SF. Thin Solid Films 519, 2488-2492 (2011).
  16. S. S. Mali, B. M. Patil, C. A. Betty, P. N. Bhosale, Y. W. Oh, S. R. Jadkar, et al. Electrochim Acta 66, 216-221 (2012).

Downloads

Published

2021-02-01

Issue

Section

Research Articles

How to Cite

[1]
Sandip V. Mahajan, Sanjay R. Kamable, Vishwajit R. Mhaske, Anil D. Adsare "Thermal Annealing Effect on Improved Structural, Morphological, Optical and Electrical Properties of Cu2ZnSnS4 Thin Film" International Journal of Scientific Research in Science and Technology(IJSRST), Online ISSN : 2395-602X, Print ISSN : 2395-6011,Volume 8, Issue 1, pp.393-397, January-February-2021. Available at doi : https://doi.org/10.32628/IJSRST.RAMAN2181