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Published in: Journal of Electronic Materials 8/2021

04-05-2021 | Original Research Article

Electrodeposition of ZnS Thin Films by Complexing Agent-Free Electrolyte Containing Sodium Thiosulfate as the Sulfur Precursor

Authors: H. M. L. U. Madhuwanthi, G. D. K. Mahanama, D. S. M. De Silva

Published in: Journal of Electronic Materials | Issue 8/2021

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Abstract

Thin films of zinc sulphide (ZnS) were prepared by a facile, economical, and scalable electrochemical method as a buffer layer for a CdS/CdTe based solar cell. Herein, a three-electrode cell in a complexing agent-free electrolyte containing 0.1 mol/L Na2S2O3 and 0.1 mol/L ZnSO4 was employed for the deposition of ZnS. The electrodeposition conditions (temperature: 30°C, pH: 4.2, cathodic potential: −1.10 V and deposition time: 90 min) were identified to grow an ideal thin film of ZnS on fluorine-doped tin oxide (FTO)-coated glass substrate, applying moderate stirring of 60 rpm. In material characterization of heat-treated samples (300°C, 10 min), the optical absorption measurement depicted a direct energy bandgap of 3.64 eV with low light absorbance and a blueshift from bulk ZnS. Scanning electron microscopy and atomic force microscopy studies demonstrated the uniform distribution of ZnS grains over the FTO glass substrate, and x-ray diffraction analysis revealed an amorphous structural nature of ZnS. The charge carrier density and flat-band potential of the ZnS material were determined as 1.19 × 10−19 cm−3 and −0.59 V, respectively, by Mott–Schottky analysis.

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Literature
1.
go back to reference M.H. Doha, M.J. Alam, J. Rabeya, K.A.M.H. Siddiquee, S. Hussain, O. Islam, M.A. Gafur, S. Islam, N. Khatun, and S.H. Sarkar, Optik (Stuttg). 126, 5194 (2015).CrossRef M.H. Doha, M.J. Alam, J. Rabeya, K.A.M.H. Siddiquee, S. Hussain, O. Islam, M.A. Gafur, S. Islam, N. Khatun, and S.H. Sarkar, Optik (Stuttg). 126, 5194 (2015).CrossRef
2.
go back to reference M. Izi, G. Heidari, S.M. Mousavi Khoie, and J. Najafi, Surf. Eng. Appl. Electrochem. 53, 245 (2017).CrossRef M. Izi, G. Heidari, S.M. Mousavi Khoie, and J. Najafi, Surf. Eng. Appl. Electrochem. 53, 245 (2017).CrossRef
3.
go back to reference R. John, and S. Florence, Chalcogenide Lett. 7, 269 (2010). R. John, and S. Florence, Chalcogenide Lett. 7, 269 (2010).
4.
go back to reference H. Zhu, J.F. Huang, Y. Wang, L.Y. Cao, H.Y. He, and J.P. Wu, Surf. Eng. 27, 42 (2011).CrossRef H. Zhu, J.F. Huang, Y. Wang, L.Y. Cao, H.Y. He, and J.P. Wu, Surf. Eng. 27, 42 (2011).CrossRef
5.
go back to reference A.B. Bhalerao, C.D. Lokhande, and B.G. Wagh, IEEE Trans. Nanotechnol. 12, 996 (2013).CrossRef A.B. Bhalerao, C.D. Lokhande, and B.G. Wagh, IEEE Trans. Nanotechnol. 12, 996 (2013).CrossRef
6.
7.
go back to reference A. Kassim, S. Nagalingam, H.S. Min, and N. Karrim, Arab. J. Chem. 3, 243 (2010).CrossRef A. Kassim, S. Nagalingam, H.S. Min, and N. Karrim, Arab. J. Chem. 3, 243 (2010).CrossRef
8.
9.
go back to reference X. Xu, F. Wang, Z. Li, J. Liu, J. Ji, and J. Chen, Electrochim. Acta 87, 511 (2013).CrossRef X. Xu, F. Wang, Z. Li, J. Liu, J. Ji, and J. Chen, Electrochim. Acta 87, 511 (2013).CrossRef
10.
go back to reference B. Long, S. Cheng, H. Zhou, J. Liao, H. Zhang, H. Jia, and H. Li, ECS Solid State Lett. 3, 140 (2014).CrossRef B. Long, S. Cheng, H. Zhou, J. Liao, H. Zhang, H. Jia, and H. Li, ECS Solid State Lett. 3, 140 (2014).CrossRef
13.
go back to reference A.A. Ojo, H.I. Salim, and I.M. Dharmadasa, J. Mater. Sci. Mater. Electron. 29, 13631 (2018).CrossRef A.A. Ojo, H.I. Salim, and I.M. Dharmadasa, J. Mater. Sci. Mater. Electron. 29, 13631 (2018).CrossRef
14.
go back to reference K. Ghezali, L. Mentar, B. Boudine, and A. Azizi, J. Electroanal. Chem. 794, 212 (2017).CrossRef K. Ghezali, L. Mentar, B. Boudine, and A. Azizi, J. Electroanal. Chem. 794, 212 (2017).CrossRef
15.
go back to reference M.L. Madugu, O.I.O. Olusola, O.K. Echendu, B. Kadem, and I.M. Dharmadasa, J. Electron. Mater. 45, 2710 (2016).CrossRef M.L. Madugu, O.I.O. Olusola, O.K. Echendu, B. Kadem, and I.M. Dharmadasa, J. Electron. Mater. 45, 2710 (2016).CrossRef
16.
go back to reference O.K. Echendu, A.R. Weerasinghe, D.G. Diso, F. Fauzi, and I.M. Dharmadasa, J. Electron. Mater. 42, 692 (2013).CrossRef O.K. Echendu, A.R. Weerasinghe, D.G. Diso, F. Fauzi, and I.M. Dharmadasa, J. Electron. Mater. 42, 692 (2013).CrossRef
17.
go back to reference A. Kassim, H.S. Min, A.H. Abdullah, N. Karrim, and S. Nagalingam, Dig. J. Nanomater. Biostructures 5, 975 (2010). A. Kassim, H.S. Min, A.H. Abdullah, N. Karrim, and S. Nagalingam, Dig. J. Nanomater. Biostructures 5, 975 (2010).
18.
go back to reference A. A. Ojo, W. M. Cranton, and I. M. Dharmadasa, Next Generation Multilayer Graded Bandgap Solar Cells (2019). A. A. Ojo, W. M. Cranton, and I. M. Dharmadasa, Next Generation Multilayer Graded Bandgap Solar Cells (2019).
19.
go back to reference H.Y.R. Atapattu, D.S.M. De Silva, K.A.S. Pathiratne, O.I. Olusola, and I.M. Dharmadasa, J. Mater. Sci. Mater. Electron. 28, 18592 (2017).CrossRef H.Y.R. Atapattu, D.S.M. De Silva, K.A.S. Pathiratne, O.I. Olusola, and I.M. Dharmadasa, J. Mater. Sci. Mater. Electron. 28, 18592 (2017).CrossRef
21.
go back to reference Y. Li, Y. Ding, Y. Zhang, and Y. Qian, J. Phys. Chem. Solids 60, 13 (1999).CrossRef Y. Li, Y. Ding, Y. Zhang, and Y. Qian, J. Phys. Chem. Solids 60, 13 (1999).CrossRef
22.
go back to reference K.S. Rathore, D. Patidar, Y. Janu, N.S. Saxena, K. Sharma, and T.P. Sharma, Chalcogenide Lett. 5, 105 (2008). K.S. Rathore, D. Patidar, Y. Janu, N.S. Saxena, K. Sharma, and T.P. Sharma, Chalcogenide Lett. 5, 105 (2008).
Metadata
Title
Electrodeposition of ZnS Thin Films by Complexing Agent-Free Electrolyte Containing Sodium Thiosulfate as the Sulfur Precursor
Authors
H. M. L. U. Madhuwanthi
G. D. K. Mahanama
D. S. M. De Silva
Publication date
04-05-2021
Publisher
Springer US
Published in
Journal of Electronic Materials / Issue 8/2021
Print ISSN: 0361-5235
Electronic ISSN: 1543-186X
DOI
https://doi.org/10.1007/s11664-021-08948-y

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