Biblio

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Journal Article
Q. Guo, Hillhouse, H. W., and Agrawal, R., Synthesis of Cu2ZnSnS4 Nanocrystal Ink and Its Use for Solar Cells, Journal of the American Chemical Society, vol. 131, no. 33, pp. 11672 - 11673, 2009.
C. Steinhagen, Panthani, M. G., Akhavan, V., Goodfellow, B., Koo, B., and Korgel, B. A., Synthesis of Cu2ZnSnS4 nanocrystals for use in low-cost photovoltaics, Journal of the American Chemical Society, vol. 131, pp. 12554–12555, 2009.
C. Wadia, Wu, Y., Gul, S., Volkman, S. K., Guo, J., and A. Alivisatos, P., Surfactant-Assisted Hydrothermal Synthesis of Single phase Pyrite FeS 2 Nanocrystals, Chemistry of Materials, vol. 21, no. 13, pp. 2568 - 2570, 2009.
P. Auger, Sur les rayons β secondaires produits dans un gaz par des rayons X, C.R.A.S., vol. 177, pp. 169-171, 1923.
M. Kumar, Dubey, A., Adhikari, N., Venkatesan, S., and Qiao, Q., Strategic review of secondary phases, defects and defect-complexes in kesterite CZTS–Se solar cells, Energy Environ. Sci., vol. 8, no. 11, pp. 3134 - 3159, 2015.
P. P. Altermatt, Kiesewetter, T., Ellmer, K., and Tributsch, H., Specifying targets of future research in photovoltaic devices containing pyrite (FeS2) by numerical modelling, Solar Energy Materials and Solar Cells, vol. 71, no. 2, pp. 181 - 195, 2002.
R. Ranjbar-Karimi, Bazmandegan-Shamili, A., Aslani, A., and Kaviani, K., Sonochemical synthesis, characterization and thermal and optical analysis of CuO nanoparticles, Physica B: Condensed Matter, vol. 405, no. 15, pp. 3096 - 3100, 2010.
I. Reda and Andreas, A., Solar Position Algorithm for Solar Radiation Applications, 2003.
A. Mette and et al, Series resistance characterization of industrial silicon solar cells with screen-printed contacts using hotmelt paste, Progress in Photovoltaics: Research and Applications, vol. 15, pp. 493-505, 2007.
S. Anandan, Wen, X., and Yang, S., Room temperature growth of CuO nanorod arrays on copper and their application as a cathode in dye-sensitized solar cells, Materials Chemistry and Physics, vol. 93, no. 1, pp. 35 - 40, 2005.
P. P. Altermatt, Schenk, A., Geelhaar, F., and Heiser, G., Reassessment of the intrinsic carrier density in crystalline silicon in view of band-gap narrowing, Journal of Applied Physics, vol. 93, no. 3, p. 1598, 2003.
T. Feurer et al., Progress in thin film CIGS photovoltaics–Research and development, manufacturing, and applications, Progress in Photovoltaics: Research and Applications, vol. 25, pp. 645–667, 2017.
D. Avellaneda, Nair, M. T. S., and Nair, P. K., Polymorphic Tin Sulfide Thin Films of Zinc Blende and Orthorhombic Structures by Chemical Deposition, Journal of The Electrochemical Society, vol. 155, no. 7, p. D517, 2008.
C. J. Hages, Koeper, M. J., and Agrawal, R., Optoelectronic and material properties of nanocrystal-based \{CZTSe\} absorbers with Ag-alloying, Solar Energy Materials and Solar Cells, vol. 145, Part 3, pp. 342 - 348, 2016.
S. Adachi and Taguchi, T., Optical properties of ZnSe, Physical Review B, vol. 43, no. 12, pp. 9569 - 9577, 1991.
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.
P. P. Altermatt, Sinton, R. A., and Heiser, G., Improvements in numerical modelling of highly injected crystalline silicon solar cells, Solar Energy Materials and Solar Cells, vol. 65, pp. 149-155(7), 2001.
M. Aven, High Electron Mobility in Zinc Selenide Through Low-Temperature Annealing, Journal of Applied Physics, vol. 42, no. 3, p. 1204, 1971.
C. J. Hages, Carter, N. J., and Agrawal, R., Generalized quantum efficiency analysis for non-ideal solar cells: Case of Cu 2 ZnSnSe 4, Journal of Applied Physics, vol. 119, no. 1, p. 014505, 2016.
H. Nagel, Berge, C., and Aberle, A. G., Generalized analysis of quasi-steady-state and quasi-transient measurements of carrier lifetimes in semiconductors, Journal of Applied Physics, vol. 86, pp. 6218-6221, 1999.
O. Benhelal, Chahed, A., Laksari, S., Abbar, B., Bouhafs, B., and Aourag, H., First-principles calculations of the structural, electronic and optical properties of IIA-IV antifluorite compounds, physica status solidi (b), vol. 242, no. 10, pp. 2022 - 2032, 2005.
O. Benhelal, Chahed, A., Laksari, S., Abbar, B., Bouhafs, B., and Aourag, H., First-principles calculations of the structural, electronic and optical properties of IIA-IV antifluorite compounds, physica status solidi (b), vol. 242, no. 10, pp. 2022 - 2032, 2005.
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.
H. Katagiri et al., Development of CZTS-based thin film solar cells, Thin Solid Films, vol. 517, pp. 2455–2460, 2009.

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