Fabrication of Cu2SnS3 thin film solar cells by sulphurization of sequentially sputtered Sn/CuSn metallic stacked precursors

Copper compounds; Copper metallography; Deposition; Efficiency; Energy gap; Fabrication; IV-VI semiconductors; Layered semiconductors; Metals; Solar power generation; Thin film solar cells; Thin films; Tin metallography; Fabrication technique; Microstructural degradation; P type conductivity; Photov...

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Bibliographic Details
Main Authors: Hossain E.S., Chelvanathan P., Shahahmadi S.A., Bais B., Akhtaruzzaman M., Tiong S.K., Sopian K., Amin N.
Other Authors: 57196058952
Format: Article
Published: Elsevier Ltd 2023
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Summary:Copper compounds; Copper metallography; Deposition; Efficiency; Energy gap; Fabrication; IV-VI semiconductors; Layered semiconductors; Metals; Solar power generation; Thin film solar cells; Thin films; Tin metallography; Fabrication technique; Microstructural degradation; P type conductivity; Photovoltaic devices; Photovoltaic technology; Polycrystalline film; Secondary phase; Thin-film depositions; Tin compounds; correlation; decomposition; degradation; efficiency measurement; electronic equipment; equipment; film; fuel cell; inorganic compound; performance assessment; photovoltaic system; technological change