Please use this identifier to cite or link to this item: http://hdl.handle.net/10603/562156
Title: Design and Development of ZnO Based Nanostructures for Photocatalytic Applications
Researcher: Saravanan, S
Guide(s): Krishna Mohan, M
Keywords: Physical Sciences
Physics
Physics Applied
University: SRM Institute of Science and Technology
Completed Date: 2024
Abstract: In our recent globalized world, industrial dye effluents cause serious issues for the environment and human well-being. Major industrial sectors such as textiles, leather, and paper require effective pre-treatment of organic pollutants, before releasing them into water streams. Effective wastewater treatment is considered an urgent need for human and environmental development. Among these sectors, the refinement of water by removal of toxic organic pollutants using solar-light-driven catalysis has received a lot of attention due to its advantages and environmental value. In recent decades, advanced oxidation processes (AOPs) by semiconductor materials have been widely used for industrial pollutant degradation. The majority of semiconductor photocatalysts have a wide bandgap, which makes them only active in the UV range. We synthesized highly efficient ZnO-based nanostructure photocatalysts with dopants using simple co-precipitation and hydrothermal methods. The prepared samples were analyzed by XRD, UV-DRS, HRSEM, EDX, TEM, and XPS. The degradation of methylene blue (MB) under sunlight irradiation was used to assess the photocatalytic activity efficiency of the prepared photocatalyst. The rare earth metal Gadolinium (Gd) was used as a dopant for the preparation of Gd-ZnO (1%, 3%, and 5%) photocatalysts. The increased Gd dopant in ZnO changes the optical band gap, further increasing visible light absorption efficiency and enhancing photocatalytic activity newline
Pagination: 
URI: http://hdl.handle.net/10603/562156
Appears in Departments:Department of Physics

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02_preliminary page.pdf516.71 kBAdobe PDFView/Open
03_content.pdf266.27 kBAdobe PDFView/Open
04_abstract.pdf163.11 kBAdobe PDFView/Open
05_chapter 1.pdf695.64 kBAdobe PDFView/Open
06_chapter 2.pdf885.93 kBAdobe PDFView/Open
07_chapter 3.pdf2.01 MBAdobe PDFView/Open
08_chapter 4.pdf2.14 MBAdobe PDFView/Open
09_chapter 5.pdf2.59 MBAdobe PDFView/Open
10_chapter 6.pdf1.89 MBAdobe PDFView/Open
11_chapter 7.pdf357.98 kBAdobe PDFView/Open
12_annexures.pdf464.11 kBAdobe PDFView/Open
80_recommendation.pdf386.37 kBAdobe PDFView/Open
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