Synthesis of ZnSe Nano Particles, Deposition of ZnSe Thin Films by Electron Beam Evaporation and Their Characterization
Ravanan Indirajith, M. Rajalakshmi, Kandasamy Ramamurthi, M. Basheer Ahamed, R. Gopalakrishnan
Abstract
Ravanan Indirajith, M. Rajalakshmi, Kandasamy Ramamurthi, M. Basheer Ahamed, R. Gopalakrishnan
Abstract
Zinc selenide (ZnSe) nano particles were synthesised by chemical route at 205°C and it was confirmed by powder X-ray diffraction analysis. Utilizing the synthesised nano particles as the source material, ZnSe thin films were deposited at various substrate temperatures (Room Temperature (RT), 150°C, 250°C, 350°C and 450°C) employing electron beam evaporation method. X-ray diffraction results show that the prepared films are amorphous in nature. Raman spectral analysis confirmed the formation of ZnSe. Optical properties were studied using UV-Vis transmittance spectrum. Film prepared at RT possesses relatively high transmittance. Electrical studies carried out show that the ZnSe thin film belongs to p-type semiconductor and the film prepared at 250°C exhibits a mobility of 65.8 cm2/Vs with the resistivity of 7.543 × 103 Ω cm.
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Zinc selenide (ZnSe) nano particles were synthesised by chemical route at 205°C and it was confirmed by powder X-ray diffraction analysis. Utilizing the synthesised nano particles as the source material, ZnSe thin films were deposited at various substrate temperatures (Room Temperature (RT), 150°C, 250°C, 350°C and 450°C) employing electron beam evaporation method. X-ray diffraction results show that the prepared films are amorphous in nature. Raman spectral analysis confirmed the formation of ZnSe. Optical properties were studied using UV-Vis transmittance spectrum. Film prepared at RT possesses relatively high transmittance. Electrical studies carried out show that the ZnSe thin film belongs to p-type semiconductor and the film prepared at 250°C exhibits a mobility of 65.8 cm2/Vs with the resistivity of 7.543 × 103 Ω cm.
Key concepts: Materials science, Thin film, Amorphous solid, Raman spectroscopy, Evaporation, Substrate (aquarium), Zinc selenide, Transmittance