Catalysis Communications · 2023 · 38 citations · 38 references
Materials ScienceEngineeringNanoengineeringPhotochemistryNanomaterialsNanotechnologyGreen NanotechnologyMethylene BlueInorganic PhotochemistryZno-y2o3 NanocompositePhotocatalysisPhoto-electrochemical CellChemistryZno-y2o3 NanocompositesFunctional MaterialsZno-y2o3 Ncs
ZnO and ZnO-Y2O3 nanocomposites (NCs) were investigated for their photocatalytic degradation of Methylene blue (MB) dye. X-ray diffraction study demonstrates that the hexagonal structure of ZnO has crystallite size compared to ZnO-Y2O3 NCs and confirms the cubic configuration of Y2O3. Scanning electron microscopy shows that the ZnO nanoparticles are spherical and ZnO-Y2O3 NCs have smaller particles with less agglomeration. The decreased recombining of excited e−/h+ of ZnO-Y2O3 NCs is confirmed over fluorescence study. ZnO-Y2O3 exhibits a more significant degradation efficiency (96%) than ZnO nanoparticles (86%) in 120 min. ZnO-Y2O3 NCs have antibacterial as well as antioxidant activity.
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Identification of oxygen and zinc vacancy optical signals in ZnO
Bengt Svensson, Andrej Kuznetsov, Peter Klason et al. · Applied Physics Letters · 2006 · 418 citations · Full text
Origin of the red emission in zinc oxide nanophosphors
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