Sonochemical synthesis of mg-doped zno nps for efficient sunlight driven photocatalysis
S. P. Meshram (Centre for Materials for Electronics Technology India)
P. D. Jolhe (Savitribai Phule Pune University)
S.D. Shingte (TU Delft - ChemE/Transport Phenomena)
B. A. Bhanvase (Rashtrasant Tukadoji Maharaj Nagpur University)
S. H. Sonawane (National Institute of Technology Warangal)
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Abstract
This chapter highlights succinic acid mediated facile sonochemical method for synthesis of Mg-doped ZnO nanoparticles. The incorporation of Mg into ZnO matrix was investigated using X-ray diffraction (XRD) technique. Textural properties of as-synthesized undoped and Mg-doped ZnO samples were investigated using FESEM coupled with elemental mapping. Optical property investigations revealed that as the Mg-doping content increased up to 0.09%, the absorption edge slightly shifted to shorter wavelengths. Further increase in Mg-doping concentration (i.e., for 0.12%) experienced a shift toward higher wavelength. Additionally, reduced near band edge emission (NBE) and excitonic emission intensities were observed for the most active photocatalyst compared to undoped ZnO. Mg-doped ZnO (0.09 at%) nanoparticles (NPs) exhibited highest photocatalytic activity among all the synthesized samples and can degrade the methylene blue (MB) dye solution in merely 60 min under sunlight irradiation.
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