Abstract:
Copper zinc tin sulphide (CZTS) thin films have been deposited on glass substrate at 323 ± 5 K using sequential ionic layer adsorption reaction (SILAR). The number of SILAR cycles required for optimum crystalline quality CZTS thin films was optimized. The as-deposited CZTS thin films showed kesterite crystalline structure with preferential orientation along (103) plane. Structural, optical, electrical, and morphological properties of the films changed when the as-prepared films were subjected to annealing in a vacuum chamber maintained at 3 ⋅ 10−4 Torr at temperatures of 473, 573, and 673 K. Film resistivity was found to decrease exponentially as the annealing temperature was increased. We have achieved a resistivity of 4.4 ⋅ 10−4Ω⋅ m for the as-prepared thin film, which is lowest among SILAR-grown films at temperature lower than 373 K without any post-deposition processing. A superstrate-type p–n junction was fabricated by growing nano-structured zinc oxide (ZnO) on top of the glass|CZTS structure using chemical spray pyrolysis technique. The photosensitivity of the p–n junction was reversed when the structure was subjected to vacuum annealing at 673 K.
Citation:
R. Jayakrishnan, A. Raj, V. G. Nair, “Deposition of CZTS|ZnO hetero-junction using SILAR and spray pyrolysis”, Fizika i Tekhnika Poluprovodnikov, 55:3 (2021), 283; Semiconductors, 55:3 (2021), 363–372
\Bibitem{JayRajNai21}
\by R.~Jayakrishnan, A.~Raj, V.~G.~Nair
\paper Deposition of CZTS|ZnO hetero-junction using SILAR and spray pyrolysis
\jour Fizika i Tekhnika Poluprovodnikov
\yr 2021
\vol 55
\issue 3
\pages 283
\mathnet{http://mi.mathnet.ru/phts6597}
\transl
\jour Semiconductors
\yr 2021
\vol 55
\issue 3
\pages 363--372
\crossref{https://doi.org/10.1134/S106378262103009X}
Linking options:
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https://www.mathnet.ru/eng/phts/v55/i3/p283
This publication is cited in the following 7 articles:
Jishad A. Salam, Adithyanath R, Akhil M. Anand, Aruna Raj, R. Jayakrishnan, “Low temperature SILAR grown ZnS over TiO2 photoanode: A hetero-structure for dye-sensitized solar cell application”, Solar Energy Materials and Solar Cells, 282 (2025), 113374
Milad Yousefizad, Zohreh Golshan Bafghi, Amirmohammad Shahriyari, Andia Javanmardi, Naser Hakimi Raad, Ashraf Ahmadi Shadmehri, Siavosh Samoodi, Negin Manavizadeh, Ali Moafi, “Advancements in photovoltaic efficiency: The role of fluorine-doped CZTS in homojunction solar cells”, Heliyon, 11:3 (2025), e42300
M.A. Bouacheria, A. Djelloul, L. Benharrat, M. Adnane, H. Bencherif, “Electrical and Optical Properties of ZnO:Al/p-Si Heterojunction Diodes”, Acta Phys. Pol. A, 145:1 (2024), 47
Folashade O. Oluyemi, Enoch D. Ogunmola, Akintunde A. Ajayi, Kazeem A. Musiliyu, “Optimizing zinc concentration in spray -deposited zinc oxide (ZnO) thin films for enhanced properties and application in Cu2ZnSnS4/ZnO heterojunction device”, Kuwait Journal of Science, 51:4 (2024), 100268
Adithya Nath R, Aruna Raj, Jishad A. Salam, Akhil M. Anand, R. Jayakrishnan, “Is the replacement of “Pb” by “Cu” in methylammonium lead bromide possible?”, Optical Materials, 135 (2023), 113373
R. Jayakrishnan, Aruna Raj, “Photosensitivity reversal in solution-processed Copper Zinc Tin Sulphide/Cadmium Sulphide superstrate junction”, Thin Solid Films, 783 (2023), 140063
Aruna Raj, S. Priji, A. Gangaprasad, Ramakrishnan Jayakrishnan, “Organic extract mediated synthesis of stable methylammonium lead bromide nanoparticles”, J Mater Sci: Mater Electron, 33:22 (2022), 17978