Abstract ZnO/Zn 2 SiO 4 nanocomposite thin films doped with 1 mol% of Mn 2+ ions were successfully synthesized by sol-gel spin coating method and subsequent thermal annealing in the ranges… Click to show full abstract
Abstract ZnO/Zn 2 SiO 4 nanocomposite thin films doped with 1 mol% of Mn 2+ ions were successfully synthesized by sol-gel spin coating method and subsequent thermal annealing in the ranges of 500–1000 °C. Effects of ZnO and SiO 2 molar ratio and annealing conditions, including one or two-step annealing, on the microstructure and PL properties of these thin films were investigated using X-ray diffraction, high-resolution transmission electron microscopy, UV–visible absorption spectroscopy, and emission spectroscopy. Results showed that precipitation of ZnO nanocrystals and willemite nanocrystals can be tailored by the composition and annealing conditions. Two-step annealing lead to more versatile modulation of the microstructure and dual band emission with blue from ZnO nanocrystals and green emission from Mn 2+ -doped Zn 2 SiO 4 nanocrystals were achieved simultaneously, making these composite thin film materials promising for various optoelectronic applications.
               
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