Works matching DE "ANTIMONY selenide"
Results: 24
CuSbSe-assisted sintering of CuInSe at low temperature.
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- Journal of Materials Science, 2012, v. 47, n. 20, p. 7085, doi. 10.1007/s10853-012-6385-3
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Thermal Treatment Effects on Electrodeposited Sb<sub>2</sub>Se<sub>3</sub> Photovoltaic Thin Films.
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- ChemElectroChem, 2017, v. 4, n. 10, p. 2507, doi. 10.1002/celc.201700511
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Lu<sup>3+</sup>/Yb<sup>3+</sup> and Lu<sup>3+</sup>/Er<sup>3+</sup> co-doped antimony selenide nanomaterials: synthesis, characterization, and electrical, thermoelectrical, and optical properties.
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- Nanoscale Research Letters, 2013, n. 3, p. 1, doi. 10.1186/1556-276X-8-141
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Enhanced Sb<sub>2</sub>Se<sub>3</sub> solar cell performance through theory-guided defect control.
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- Progress in Photovoltaics, 2017, v. 25, n. 10, p. 861, doi. 10.1002/pip.2900
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Thermal properties and the structure of amorphous SbSe thin film.
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- Journal of Thermal Analysis & Calorimetry, 2014, v. 118, n. 1, p. 105, doi. 10.1007/s10973-014-4000-3
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PHASE EQUILIBRIA IN THE Ag<sub>2</sub>Se-PbSe-AgSbSe<sub>2</sub> SYSTEM.
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- Chemical Problems / Kimya Problemləri, 2019, v. 17, n. 1, p. 41, doi. 10.32737/2221-8688-2019-1-41-49
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Enhancement in the Efficiency of Sb<sub>2</sub>Se<sub>3</sub> Thin‐Film Solar Cells by Increasing Carrier Concertation and Inducing Columnar Growth of the Grains.
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- Solar RRL, 2019, v. 3, n. 3, p. N.PAG, doi. 10.1002/solr.201800224
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Growth and study of antimony selenide island films.
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- Crystallography Reports, 2013, v. 58, n. 2, p. 365, doi. 10.1134/S1063774513020132
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Photovoltaics: Non-cubic solar cell materials.
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- Nature Photonics, 2015, v. 9, n. 6, p. 355, doi. 10.1038/nphoton.2015.85
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Thin-film Sb<sub>2</sub>Se<sub>3</sub> photovoltaics with oriented one-dimensional ribbons and benign grain boundaries.
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- Nature Photonics, 2015, v. 9, n. 6, p. 409, doi. 10.1038/nphoton.2015.78
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Properties of SbS and SbSe thin films obtained by pulsed laser ablation.
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- Semiconductors, 2013, v. 47, n. 7, p. 1003, doi. 10.1134/S1063782613070233
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Controlled solvothermal synthesis of ultrahigh-aspect-ratio SbSe nanowires and their photoconductive properties.
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- Journal of Materials Science: Materials in Electronics, 2015, v. 26, n. 2, p. 970, doi. 10.1007/s10854-014-2490-1
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Electrodeposition of Fe-doped Sb<sub>2</sub>Se<sub>3</sub> thin films for photoelectrochemical applications and study of the doping effects on their properties.
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- Journal of Solid State Electrochemistry, 2018, v. 22, n. 5, p. 1557, doi. 10.1007/s10008-017-3768-z
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Synthesis and Characterisation of Zinc-doped Antimony Selenide.
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- Iraqi Journal of Science, 2021, v. 62, n. 10, p. 3552, doi. 10.24996/ijs.2021.62.10.14
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Sb<sub>2</sub>Se<sub>3</sub> Thin‐Film Photovoltaics Using Aqueous Solution Sprayed SnO<sub>2</sub> as the Buffer Layer.
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- Advanced Electronic Materials, 2018, v. 4, n. 1, p. 1, doi. 10.1002/aelm.201700329
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An Antimony Selenide Molecular Ink for Flexible Broadband Photodetectors.
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- Advanced Electronic Materials, 2016, v. 2, n. 9, p. 1, doi. 10.1002/aelm.201600182
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Vapor transport deposition of Sb<sub>2</sub>Se<sub>3</sub> thin films for photodetector application.
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- Journal of Advanced Dielectrics, 2020, v. 10, n. 4, p. N.PAG, doi. 10.1142/S2010135X20500162
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Optimized Theoretical Analysis of Antimony Selenide (Sb<sub>2</sub>Se<sub>3</sub>) Chalcogenide Thin Film.
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- PIERS Proceedings, 2014, p. 1852
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O-Doped SbSe Phase-Change Materials for High Thermal Stability and Fast Speed.
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- Journal of Electronic Materials, 2017, v. 46, n. 12, p. 6811, doi. 10.1007/s11664-017-5732-1
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Sb<sub>2</sub>Se<sub>3</sub>-Sensitized Inorganic-Organic Heterojunction Solar Cells Fabricated Using a Single-Source Precursor.
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- Angewandte Chemie, 2014, v. 126, n. 5, p. 1353, doi. 10.1002/ange.201308331
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Structural and optical properties of SbSe (x = 0, 5) thin films.
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- Optical & Quantum Electronics, 2017, v. 49, n. 9, p. 1, doi. 10.1007/s11082-017-1123-3
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Preparation and electrical transport properties of nanostructured SbSe films fabricated by combining spin-coating and gas-induced reduction.
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- Journal of Nanoparticle Research, 2013, v. 15, n. 4, p. 1, doi. 10.1007/s11051-013-1541-5
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On the Stability of Operation of Antimony Sulfide Selenide Thin Film Solar Cells Under Solar Radiation.
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- Physica Status Solidi. A: Applications & Materials Science, 2018, v. 215, n. 24, p. N.PAG, doi. 10.1002/pssa.201800479
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Enhanced Thermoelectric Properties of Cu<sub>3</sub>SbSe<sub>4</sub> Compounds via Gallium Doping.
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- Energies (19961073), 2017, v. 10, n. 10, p. 1524, doi. 10.3390/en10101524
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