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- W3163256929 abstract "Throughout this research, the optical and thermoelectric properties of rutile SnO2 are investigated using the ab-initio method and the experimental measurements. Both phonon dispersion curve and dynamical stability of rutile SnO2 have been investigated. The high static value of dielectric constant (4.2LDA and 5.1GGA), and refractive index (2.1LDA and 3.01GGA) are determined. Thermoelectric properties of pure SnO2 such as Seebeck coefficient, electrical conductivity, thermal conductivity, and the figure of merit are calculated as a result of temperature within 300–700 K range. The obtained values show that the pure rutile SnO2 can be a good candidate for a thermoelectric application. The obtained results of the current investigation demonstrate a potential application of rutile SnO2 in many thermoelectric, optoelectronics, and photonic applications. Deposited by spray pyrolysis method, a (110) -oriented tetragonal crystal structure of SnO2 thin layer is confirmed by X-ray patterns. SnO2 thin layer demonstrates a high transparency >80% within IR range with an optical bandgap of 3.5 eV. Furthermore photoluminescence analysis reveals the blue (452 nm) emission and SEM, AFM observations confirm the nanostructure aspect of such layers with an average grain size of 100 nm." @default.
- W3163256929 created "2021-05-24" @default.
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- W3163256929 date "2021-07-01" @default.
- W3163256929 modified "2023-10-18" @default.
- W3163256929 title "Computational assessment and experimental study of optical and thermoelectric properties of rutile SnO2 semiconductor" @default.
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- W3163256929 doi "https://doi.org/10.1016/j.spmi.2021.106923" @default.
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