Biblio
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Author Title [ Type] Year Filters: First Letter Of Last Name is W [Clear All Filters]
“24.5% efficiency PERT silicon solar cells on SEH MCZ substrates and cell performance on other SEH CZ and FZ substrates”, Solar Energy Materials and Solar Cells, vol. 66, pp. 27 - 36, 2001.
, “Applied Photovoltaics”, p. 317, 2007.
, “Applied Photovoltaics”, p. 317, 2007.
, “Arsenic in iron disulfides in a brown coal from the North Bohemian Basin, Czech Republic”, International Journal of Coal Geology, vol. 71, no. 2-3, pp. 115 - 121, 2007.
, “Bi2S3 as a high Z material for γ-ray detectors”, IEEE Transactions on Nuclear Science, vol. 22, no. 1, pp. 246 - 250, 1975.
, “Crystal and electronic band structure of Cu2ZnSnX4 (X= S and Se) photovoltaic absorbers: first-principles insights”, Applied Physics Letters, vol. 94, p. 41903, 2009.
, “Crystal and electronic band structure of Cu2ZnSnX4 (X= S and Se) photovoltaic absorbers: first-principles insights”, Applied Physics Letters, vol. 94, p. 41903, 2009.
, “CuInSe2/CdS heterojunction photovoltaic detectors”, Applied Physics Letters, vol. 25, pp. 434–435, 1974.
, “CVD routes to titanium disulfide films”, Advanced Materials, vol. 6, no. 3, pp. 237 - 239, 1994.
, “Degradation of carrier lifetime in Cz silicon solar cells”, Solar Energy Materials and Solar Cells, vol. 65, pp. 219 - 229, 2001.
, “Degradation of carrier lifetime in Cz silicon solar cells”, Solar Energy Materials and Solar Cells, vol. 65, pp. 219 - 229, 2001.
, “Device characteristics of CZTSSe thin-film solar cells with 12.6% efficiency”, Advanced Energy Materials, vol. 4, 2014.
, “Device characteristics of CZTSSe thin-film solar cells with 12.6% efficiency”, Advanced Energy Materials, vol. 4, 2014.
, “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.
, “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.
, “Effects of Na on the electrical and structural properties of CuInSe2”, Journal of Applied Physics, vol. 85, pp. 7214–7218, 1999.
, “The electrical properties of zinc selenide”, Journal of Physics D: Applied Physics, vol. 9, no. 5, pp. 799 - 810, 1976.
, “Electronic structures of semiconducting alkaline-earth metal silicides”, Journal of Alloys and Compounds, vol. 358, no. 1-2, pp. 257 - 263, 2003.
, “Green synthesis of tunable Cu(In1−xGax)Se2 nanoparticles using non-organic solvents”, Green Chemistry, vol. 12, no. 7, p. 1248, 2010.
, “High-efficiency Cu(In,Ga)Se2 cells and modules”, Solar energy materials and solar cells, vol. 119, pp. 51–58, 2013.
, “High-efficiency Cu(In,Ga)Se2 cells and modules”, Solar energy materials and solar cells, vol. 119, pp. 51–58, 2013.
, “Improved quantitative description of Auger recombination in crystalline silicon”, Physical Review B, vol. 86, no. 16, 2012.
, “Intercalation and lattice expansion in titanium disulfide”, The Journal of Chemical Physics, vol. 62, no. 4, p. 1588, 1975.
, “Minority-carrier transport parameters in n-type silicon”, IEEE Transactions on Electron Devices, vol. 37, pp. 1314 - 1322, 1990.
, “The path towards a high-performance solution-processed kesterite solar cell”, Solar Energy Materials and Solar Cells, vol. 95, pp. 1421 - 1436, 2011.
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