Synthesis and characterization of Cu2CoSnS4 thin film via electrodeposition technique for solar cells

被引:0
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作者
Mustapha Beraich
Mhamed Taibi
Abdellah Guenbour
Abdelkader Zarrouk
Maria Boudalia
Abdelkbir Bellaouchou
Mohamed Tabyaoui
Zouheir Sekkat
Mounir Fahoume
机构
[1] Ibn Tofail University,Laboratory of Physics of Condensed Matter, Department of Physics
[2] University of Mohammed V,Laboratory of Physico
[3] Mohammed V University,Chemistry of Inorganic and Organic Materials, CSM, Ecole Normale Supérieure
[4] University Mohammed V in Rabat,Laboratory of Materials, Nanotechnology and Environment, Faculty of Sciences
[5] MAScIR,Department of Chemistry, Faculty of Sciences
[6] Osaka University,Optics & Photonics Center
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摘要
Quaternary compound Cu2CoSnS4 (CCTS) is a potential candidate absorber layer in thin film solar cells to produce clean and inexhaustible energy. In this work the Cu2CoSnS4 (CCTS) thin film was synthesized for the first time by co-electrodeposition of Cu–Co–Sn–S precursors on Molybdenum substrate, followed by a high temperature (500 °C) sulfurization under Argon atmosphere. The potential deposition (−0.95 V/SCE) was determined from cyclic voltammetry . The structure, composition and morphology of the CCTS thin film is characterized in detail by X-ray diffraction, Raman spectroscopy, scanning electron microscopy and energy dispersion spectroscopy. The p-type conductivity of CCTS thin film was confirmed using Mott–Schottky analysis and the band gap value was evaluated to be 1.56 eV, which makes CCTS a promising material for solar cell applications.
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页码:12487 / 12492
页数:5
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