Annealing temperature assisted microstructural and optoelectrical properties of CdSe thin film grown by RF magnetron sputtering

Annealing; Borosilicate glass; Carrier concentration; Energy gap; II-VI semiconductors; Magnetron sputtering; Optical properties; Selenium compounds; Substrates; Thin film solar cells; Thin films; Vacuum furnaces; X ray diffraction; Annealing temperatures; Borosilicate glass substrates; Hall effect...

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Bibliographic Details
Main Authors: Rosly H.N., Rahman K.S., Harif M.N., Doroody C., Isah M., Misran H., Amin N.
Other Authors: 36873451800
Format: Article
Published: Academic Press 2023
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Summary:Annealing; Borosilicate glass; Carrier concentration; Energy gap; II-VI semiconductors; Magnetron sputtering; Optical properties; Selenium compounds; Substrates; Thin film solar cells; Thin films; Vacuum furnaces; X ray diffraction; Annealing temperatures; Borosilicate glass substrates; Hall effect measurement; Optoelectrical properties; Preferred orientations; Radio frequency magnetron sputtering; rf-Magnetron sputtering; Solar-cell applications; Cadmium compounds