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Published in: Journal of Materials Science: Materials in Electronics 2/2013

01-02-2013

Structural and optical properties of the Cu2ZnSnSe4 thin films grown by nano-ink coating and selenization

Authors: Ying Liu, De-Yi Kong, Hui You, Chi-lai Chen, Xin-hua Lin, Jürgen Brugger

Published in: Journal of Materials Science: Materials in Electronics | Issue 2/2013

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Abstract

Quaternary semiconductor Cu2ZnSnSe4 (CZTSe) is a very promising alternative to semiconductors based on indium (In) and gallium (Ga) as solar absorber material due to its direct band gap, inherent high absorption coefficient (>104 cm−1) and abundance of cheap elements zinc (Zn) and tin (Sn). In this study, high quality CZTSe thin films were successfully synthesized by a green and low-cost solution based non-vacuum method, which involves spin coating non-toxic solvent-based CZTSe nano-inks onto Mo coated soda lime glass substrates followed by selenization with elemental Se vapor. The effect of selenization temperature on structural, morphological, compositional and optical properties of CZTSe films are investigated using X-ray diffraction (XRD), Raman spectroscopy, scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS) and photoluminescence spectroscopy. XRD and Raman analysis indicates that a tetragonal stannite-type structured CZTSe is formed. Depend on the selenization temperature, the dense and compact films with grain sizes from 200 nm (500 °C) up to about 1 μm (580 °C) are obtained. EDS measurement indicates that the composition ratios of the prepared CZTSe films are copper-poor and zinc-rich nature. The CZTSe films are p-type conductivity confirmed by a hot point probe method. Photoluminescence spectrum shows slightly asymmetric narrow bands with a maximum of intensity at 0.92 eV. The dependence of the photoluminescence on the excitation temperature reveals a decrease in the intensity of the photoluminescence bands. An absorption coefficient exceeding 104 cm−1 and the band gap energy about 0.87 eV of the studied films are determined by an absorption spectroscopy.

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Literature
1.
go back to reference P. Jackson, D. Hariskos, E. Lotter, S. Paetel, R. Wuerz, R. Menner, W. Wischmann, M. Powalla, Prog. Photovoltaics Res. Appl. 19, 894 (2011)CrossRef P. Jackson, D. Hariskos, E. Lotter, S. Paetel, R. Wuerz, R. Menner, W. Wischmann, M. Powalla, Prog. Photovoltaics Res. Appl. 19, 894 (2011)CrossRef
2.
go back to reference F. Luckert, D.I. Hamilton, M.V. Yakushev, N.S. Beattie, G. Zoppi, M. Moynihan, I. Forbes, A.V. Karotki, A.V. Mudryi, M. Grossberg, J. Krustok, R.W. Martin, Appl. Phys. Lett. 99, 062104 (2011)CrossRef F. Luckert, D.I. Hamilton, M.V. Yakushev, N.S. Beattie, G. Zoppi, M. Moynihan, I. Forbes, A.V. Karotki, A.V. Mudryi, M. Grossberg, J. Krustok, R.W. Martin, Appl. Phys. Lett. 99, 062104 (2011)CrossRef
3.
go back to reference G. Suresh Babu, Y.B. Kishore Kumar, P. Uday Bhaskar, S. Raja Vanjari, Sol. Energy Mater. Sol. Cells 94, 221 (2010)CrossRef G. Suresh Babu, Y.B. Kishore Kumar, P. Uday Bhaskar, S. Raja Vanjari, Sol. Energy Mater. Sol. Cells 94, 221 (2010)CrossRef
4.
go back to reference I. Repins, C. Beall, N. Vora, C. DeHart, D. Kuciauskas, P. Dippo, B. To, J. Mann, W.-C. Hsu, A. Goodrich, R. Noufi, Sol. Energy Mater. Sol. Cells 101, 154 (2012)CrossRef I. Repins, C. Beall, N. Vora, C. DeHart, D. Kuciauskas, P. Dippo, B. To, J. Mann, W.-C. Hsu, A. Goodrich, R. Noufi, Sol. Energy Mater. Sol. Cells 101, 154 (2012)CrossRef
5.
go back to reference G. Zoppi, I. Forbes, R.W. Miles, P.J. Dale, J.J. Scragg, L.M. Peter, Prog. Photovolt. Res. Appl. 17, 315 (2009)CrossRef G. Zoppi, I. Forbes, R.W. Miles, P.J. Dale, J.J. Scragg, L.M. Peter, Prog. Photovolt. Res. Appl. 17, 315 (2009)CrossRef
7.
go back to reference P.M.P. Salomé, P.A. Fernandes, A.F. da Cunha, Thin Solid Films 517, 2531 (2009)CrossRef P.M.P. Salomé, P.A. Fernandes, A.F. da Cunha, Thin Solid Films 517, 2531 (2009)CrossRef
8.
go back to reference R.A. Wibowo, W.S. Kim, E.S. Lee, B. Munir, K.H. Kim, J. Phys. Chem. Solids 68, 1908 (2007)CrossRef R.A. Wibowo, W.S. Kim, E.S. Lee, B. Munir, K.H. Kim, J. Phys. Chem. Solids 68, 1908 (2007)CrossRef
9.
go back to reference R. Adhi Wibowo, E. Soo Lee, B. Munir, K. Ho Kim, Phys. Status Solidi. (a) 204, 3373 (2007)CrossRef R. Adhi Wibowo, E. Soo Lee, B. Munir, K. Ho Kim, Phys. Status Solidi. (a) 204, 3373 (2007)CrossRef
10.
go back to reference C.M. Fella, A.R. Uhl, Y.E. Romanyuk, A.N. Tiwari, Phys. Status Solidi. (a) 209, 1043 (2012)CrossRef C.M. Fella, A.R. Uhl, Y.E. Romanyuk, A.N. Tiwari, Phys. Status Solidi. (a) 209, 1043 (2012)CrossRef
11.
go back to reference D.A.R. Barkhouse, O. Gunawan, T. Gokmen, T.K. Todorov, D.B. Mitzi, Prog. Photovoltaics Res. Appl. 20, 6 (2012)CrossRef D.A.R. Barkhouse, O. Gunawan, T. Gokmen, T.K. Todorov, D.B. Mitzi, Prog. Photovoltaics Res. Appl. 20, 6 (2012)CrossRef
12.
go back to reference D. Abou-Ras, G. Kostorz, D. Bremaud, M. Kälin, F.V. Kurdesau, A.N. Tiwari, M. Döbeli, Thin Solid Films 480–481, 433 (2005)CrossRef D. Abou-Ras, G. Kostorz, D. Bremaud, M. Kälin, F.V. Kurdesau, A.N. Tiwari, M. Döbeli, Thin Solid Films 480–481, 433 (2005)CrossRef
13.
go back to reference T. Wada, N. Kohara, S. Nishiwaki, T. Negami, Thin Solid Films 387, 118 (2001)CrossRef T. Wada, N. Kohara, S. Nishiwaki, T. Negami, Thin Solid Films 387, 118 (2001)CrossRef
14.
go back to reference N. Kohara, S. Nishiwaki, Y. Hashimoto, T. Negami, T. Wada, Sol. Energy Mater. Sol. Cells 67, 209 (2001)CrossRef N. Kohara, S. Nishiwaki, Y. Hashimoto, T. Negami, T. Wada, Sol. Energy Mater. Sol. Cells 67, 209 (2001)CrossRef
15.
16.
go back to reference M. Altosaar, J. Raudoja, K. Timmo, M. Danilson, M. Grossberg, J. Krustok, E. Mellikov, Phys. Status Solidi. (a) 205, 167 (2008)CrossRef M. Altosaar, J. Raudoja, K. Timmo, M. Danilson, M. Grossberg, J. Krustok, E. Mellikov, Phys. Status Solidi. (a) 205, 167 (2008)CrossRef
17.
go back to reference S. Ahn, S. Jung, J. Gwak, A. Cho, K. Shin, K. Yoon, D. Park, H. Cheong, J.H. Yun, Appl. Phys. Lett. 97, 021905 (2010)CrossRef S. Ahn, S. Jung, J. Gwak, A. Cho, K. Shin, K. Yoon, D. Park, H. Cheong, J.H. Yun, Appl. Phys. Lett. 97, 021905 (2010)CrossRef
18.
go back to reference M. Grossberg, J. Krustok, K. Timmo, M. Altosaar, Thin Solid Films 517, 2489 (2009)CrossRef M. Grossberg, J. Krustok, K. Timmo, M. Altosaar, Thin Solid Films 517, 2489 (2009)CrossRef
19.
go back to reference P.M.P. Salomé, P.A. Fernandes, A.F. da Cunha, J.P. Leitão, J. Malaquias, A. Weber, J.C. González, M.I.N. da Silva, Sol. Energy Mater. Sol. Cells 94, 2176 (2010)CrossRef P.M.P. Salomé, P.A. Fernandes, A.F. da Cunha, J.P. Leitão, J. Malaquias, A. Weber, J.C. González, M.I.N. da Silva, Sol. Energy Mater. Sol. Cells 94, 2176 (2010)CrossRef
20.
21.
go back to reference S. Chen, X.G. Gong, A. Walsh, S.-H. Wei, Appl. Phys. Lett. 94, 041903 (2009)CrossRef S. Chen, X.G. Gong, A. Walsh, S.-H. Wei, Appl. Phys. Lett. 94, 041903 (2009)CrossRef
Metadata
Title
Structural and optical properties of the Cu2ZnSnSe4 thin films grown by nano-ink coating and selenization
Authors
Ying Liu
De-Yi Kong
Hui You
Chi-lai Chen
Xin-hua Lin
Jürgen Brugger
Publication date
01-02-2013
Publisher
Springer US
Published in
Journal of Materials Science: Materials in Electronics / Issue 2/2013
Print ISSN: 0957-4522
Electronic ISSN: 1573-482X
DOI
https://doi.org/10.1007/s10854-012-0970-8

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