Title of article :
Biosynthesis, Characterization of Nickel (II) Oxide Nanoparticles NiO and their High- Efficient Photocatalytic Application
Author/Authors :
El Ghmari ، Brahim Physical-Chemistry of Processes and Materials Laboratory, Department of Applied Chemistry ‎and Environment - Faculty of Science and Technology - Hassan First University of Settat , Farah ، Hanane Physical-Chemistry of Processes and Materials Laboratory, Department of Applied Chemistry ‎and Environment - Faculty of Science and Technology - Hassan First University of Settat , Ech-Chahad ، Abdellah Physical-Chemistry of Processes and Materials Laboratory, Department of Applied Chemistry ‎and Environment - Faculty of Science and Technology - Hassan First University of Settat
From page :
135
To page :
147
Abstract :
This work sought to compare the photocatalytic efficiency of nickel (II) oxide nanoparticles (NiO-NPs) for the degradation of methylene blue (MB) and Rhodamine B dye (Rh B). NiO-NPs were synthesized by a green, simple and easy route using the plant extract H. Hirsuta. The morphological characteristics of the synthesized NiO NPs were characterized by SEM. In addition, UV-vis, XRD, FTIR and EDS analyses were also performed to investigate the optical properties, crystal size, functional groups and elemental composition of the NPs. These NiO NPs have a crystallinity size of 20.82 nm, and then were used for photocatalytic degradation of MB and Rh B in the presence of visible light irradiation. The photocatalytic degradation rate under optimal conditions of MB and Rh B was found to be 97.19% and 79.42% , respectively. The kinetic study of photocatalytic degradation followed pseudo-first-order kinetics for MB and Rh B dyes. In addition, NiO-NPs were used for a 4-nitrophenol reduction activity reaching 91.17% for 3 cycles.
Keywords :
Nickel oxide nanoparticles NiO , NPs , H. Hirsuta plant extract , 4 , nitrophenol , Dye degradation , Methylene blue , Rhodamine B
Journal title :
International Journal of Nanoscience and Nanotechnology (IJNN)
Journal title :
International Journal of Nanoscience and Nanotechnology (IJNN)
Record number :
2754193
Link To Document :
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