Biblio

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Journal Article
D. Jordan and Nagle, J. P., Buried contact concentrator solar cells, Progress in Photovoltaics: Research and Applications, vol. 2, pp. 171-176, 1994.
H. Katagiri et al., Development of CZTS-based thin film solar cells, Thin Solid Films, vol. 517, pp. 2455–2460, 2009.
P. Jackson, Wuerz, R., Hariskos, D., Lotter, E., Witte, W., and Powalla, M., Effects of heavy alkali elements in Cu (In, Ga) Se2 solar cells with efficiencies up to 22.6%, physica status solidi (RRL)–Rapid Research Letters, vol. 10, pp. 583–586, 2016.
G. Jones and Woods, J., The electrical properties of zinc selenide, Journal of Physics D: Applied Physics, vol. 9, no. 5, pp. 799 - 810, 1976.
A. Jain, Exact analytical solutions of the parameters of real solar cells using Lambert W-function, Solar Energy Materials and Solar Cells, vol. 81, no. 2, pp. 269 - 277, 2004.
H. KIDOWAKI, OKU, T., Akiyama, T., SUZUKI, A., JEYADEVAN, B., and Cuya, J., Fabrication and Characterization of CuO-based Solar Cells, Journal of Materials Science Research, vol. 1, no. 1, 2011.
L. Al Juhaiman, Scoles, L., Kingston, D., Patarachao, B., Wang, D., and Bensebaa, F., Green synthesis of tunable Cu(In1−xGax)Se2 nanoparticles using non-organic solvents, Green Chemistry, vol. 12, no. 7, p. 1248, 2010.
M. Powalla et al., High-efficiency Cu(In,Ga)Se2 cells and modules, Solar energy materials and solar cells, vol. 119, pp. 51–58, 2013.
A. Rockett et al., Na incorporation in Mo and CuInSe2 from production processes, Solar energy materials and solar cells, vol. 59, pp. 255–264, 1999.
R. MOTOYOSHI et al., Structure and photovoltaic activity of cupric oxide-based thin film solar cells, Journal of the Ceramic Society of Japan, vol. 118, no. 1383, pp. 1021 - 1023, 2010.
A. Rumberg, Sommerhalter, C., Toplak, M., Jäger-Waldau, A., and Lux-Steiner, M. C., ZnSe thin films grown by chemical vapour deposition for application as buffer layer in CIGSS solar cells, Thin Solid Films, vol. 361-362, pp. 172 - 176, 2000.