Biblio

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R
A. Cuevas, The Recombination Parameter J0, Energy Procedia, vol. 55, pp. 53 - 62, 2014.
R. A. Sinton and Swanson, R. M., Recombination in highly injected silicon, Electron Devices, IEEE Transactions on, vol. 34, pp. 1380 - 1389, 1987.
A. E. Becquerel, Recherches sur les effets de la radiation chimique de la lumiere solaire au moyen des courants electriques, Comptes Rendus de L´Academie des Sciences, vol. 9, pp. 145-149, 1839.
M. Nakamura et al., Recent R&D progress in solar frontier's small-sized Cu (InGa)(SeS)2 solar cells, in 2014 IEEE 40th Photovoltaic Specialist Conference (PVSC), 2014.
R. Hezel, Recent progress in MIS solar cells, Progress in Photovoltaics: Research and Applications, vol. 5, pp. 109-120, 1997.
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.
M. Y. Levy and Honsberg, C. B., Rapid and precise calculations of energy and particle flux for detailed-balance photovoltaic applications, Solid-State Electronics, vol. 50, pp. 1400-1405, 2006.
S. Bowden and Rohatgi, A., Rapid and Accurate Determination of Series Resistance and Fill Factor Losses in Industrial Silicon Solar Cells, in 17th European Photovoltaic Solar Energy Conference, Munich, Germany, 2001.
P
S. Furuseth, Kjekshus, A., Niklasson, R. J. V., Brunvoll, J., and Hinton, M., On the Properties of alpha-MnS and MnS2., Acta Chemica Scandinavica, vol. 19, pp. 1405 - 1410, 1965.
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.
C. D. Lokhande et al., Process and characterisation of chemical bath deposited manganese sulphide (MnS) thin films, Thin Solid Films, vol. 330, no. 2, pp. 70 - 75, 1998.
L. Ehm, Knorr, K., Dera, P., Krimmel, A., Bouvier, P., and Mezouar, M., Pressure-induced structural phase transition in the IV–VI semiconductor SnS, Journal of Physics: Condensed Matter, vol. 16, no. 21, pp. 3545 - 3554, 2004.
R. Chandramohan, Sanjeeviraja, C., and Mahalingam, T., Preparation of Zinc Selenide Thin Films by Electrodeposition Technique for Solar Cell Applications, physica status solidi (a), vol. 163, no. 2, pp. R11 - R12, 1997.
H. Katagiri, Sasaguchi, N., Hando, S., Hoshino, S., Ohashi, J., and Yokota, T., Preparation and evaluation of Cu2ZnSnS4 thin films by sulfurization of E-B evaporated precursors, Solar Energy Materials and Solar Cells, vol. 49, pp. 407 - 414, 1997.
D. Chauhan, Satsangi, V. R., Dass, S., and Shrivastav, R., Preparation and characterization of nanostructured CuO thin films for photoelectrochemical splitting of water, Bulletin of Materials Science, vol. 29, p. 709, 2006.
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.
J. Nelson, The Physics of Solar Cells, p. 355, 2003.
P. Würfel, Physics of Solar Cells, p. 183, 2009.
W. A. Wooster, Physical properties and atomic arrangements in crystals, Reports on Progress in Physics, vol. 16, no. 1, pp. 62 - 82, 2002.
J. G. Fossum, Physical operation of back-surface-field silicon solar cells, IEEE Transactions on Electron Devices, vol. 24, pp. 322 - 325, 1977.
SERI, Photovoltaics for Residential Applications. Golden, Colorado: Solar Energy Research Institute, 1984.
M. A. Green, Photovoltaics: Coming of Age, 21st IEEE Photovoltaic Specialists Conference. Orlando, USA, pp. 1-8, 1990.
A. Goetzberger and Hoffmann, V. U., Photovoltaic Solar Energy Generation, p. 232, 2005.

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