Li/Zno And Chitosan/Li/Zno Quantum Dots For The Photocatalytic Oxidation Of Oxytetracycline

Quantum dots are a class of nano-sized materials that have the potential to be developed into photocatalysts due to their ability to absorb visible light, generate multiple excitons due to quantum confinement, have luminescent properties, and have a high surface-to-volume ratio. This study is divide...

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Main Author: Jasni, Normawati
Format: Thesis
Language:English
Published: 2023
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Online Access:http://eprints.usm.my/60448/1/24%20Pages%20from%20NORMAWATI%20BINTI%20JASNI.pdf
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spelling my.usm.eprints.60448 http://eprints.usm.my/60448/ Li/Zno And Chitosan/Li/Zno Quantum Dots For The Photocatalytic Oxidation Of Oxytetracycline Jasni, Normawati QD1-999 Chemistry Quantum dots are a class of nano-sized materials that have the potential to be developed into photocatalysts due to their ability to absorb visible light, generate multiple excitons due to quantum confinement, have luminescent properties, and have a high surface-to-volume ratio. This study is divided into two parts. In the first part, Li/ZnO quantum dots (Li/ZnO QDs) was synthesized via microwave methods utilizing Li+ ion as capping agent. In the second part, the Li/ZnO QDs were encapsulated with chitosan (CHT/Li/ZnO QDs) to enhance the physicochemical properties of Li/ZnO QDs. The synthesised photocatalyst were characterised using Fourier-transform infrared (FT-IR) spectrometer, x-ray diffraction (XRD), high-resolution transmission electron microscope (HRTEM), scanning electron microscope (SEM), UV-vis diffuse reflectance spectroscopy (UV-DRS), photoluminescence (PL), nitrogen adsorption-desorption analysis (NAD) analysis, atomic force microscopy (AFM), x-ray photoelectron spectroscopy (XPS) and thermal stability (TGA). The SEM analysis shows that adding chitosan prevented the Li/ZnO QDs from agglomerating. The AFM analysis measured the surface roughness of Li/ZnO QDs and CHT/Li/ZnO QDs to be 21.7 to 33.2 nm, respectively. The increase is due to the ability of chitosan to form loosely packed smaller grains. The XRD analysis indicates that both photocatalysts contains hexagonal wurtzite type crystal structure. 2023-04 Thesis NonPeerReviewed application/pdf en http://eprints.usm.my/60448/1/24%20Pages%20from%20NORMAWATI%20BINTI%20JASNI.pdf Jasni, Normawati (2023) Li/Zno And Chitosan/Li/Zno Quantum Dots For The Photocatalytic Oxidation Of Oxytetracycline. Masters thesis, Perpustakaan Hamzah Sendut.
institution Universiti Sains Malaysia
building Hamzah Sendut Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Sains Malaysia
content_source USM Institutional Repository
url_provider http://eprints.usm.my/
language English
topic QD1-999 Chemistry
spellingShingle QD1-999 Chemistry
Jasni, Normawati
Li/Zno And Chitosan/Li/Zno Quantum Dots For The Photocatalytic Oxidation Of Oxytetracycline
description Quantum dots are a class of nano-sized materials that have the potential to be developed into photocatalysts due to their ability to absorb visible light, generate multiple excitons due to quantum confinement, have luminescent properties, and have a high surface-to-volume ratio. This study is divided into two parts. In the first part, Li/ZnO quantum dots (Li/ZnO QDs) was synthesized via microwave methods utilizing Li+ ion as capping agent. In the second part, the Li/ZnO QDs were encapsulated with chitosan (CHT/Li/ZnO QDs) to enhance the physicochemical properties of Li/ZnO QDs. The synthesised photocatalyst were characterised using Fourier-transform infrared (FT-IR) spectrometer, x-ray diffraction (XRD), high-resolution transmission electron microscope (HRTEM), scanning electron microscope (SEM), UV-vis diffuse reflectance spectroscopy (UV-DRS), photoluminescence (PL), nitrogen adsorption-desorption analysis (NAD) analysis, atomic force microscopy (AFM), x-ray photoelectron spectroscopy (XPS) and thermal stability (TGA). The SEM analysis shows that adding chitosan prevented the Li/ZnO QDs from agglomerating. The AFM analysis measured the surface roughness of Li/ZnO QDs and CHT/Li/ZnO QDs to be 21.7 to 33.2 nm, respectively. The increase is due to the ability of chitosan to form loosely packed smaller grains. The XRD analysis indicates that both photocatalysts contains hexagonal wurtzite type crystal structure.
format Thesis
author Jasni, Normawati
author_facet Jasni, Normawati
author_sort Jasni, Normawati
title Li/Zno And Chitosan/Li/Zno Quantum Dots For The Photocatalytic Oxidation Of Oxytetracycline
title_short Li/Zno And Chitosan/Li/Zno Quantum Dots For The Photocatalytic Oxidation Of Oxytetracycline
title_full Li/Zno And Chitosan/Li/Zno Quantum Dots For The Photocatalytic Oxidation Of Oxytetracycline
title_fullStr Li/Zno And Chitosan/Li/Zno Quantum Dots For The Photocatalytic Oxidation Of Oxytetracycline
title_full_unstemmed Li/Zno And Chitosan/Li/Zno Quantum Dots For The Photocatalytic Oxidation Of Oxytetracycline
title_sort li/zno and chitosan/li/zno quantum dots for the photocatalytic oxidation of oxytetracycline
publishDate 2023
url http://eprints.usm.my/60448/1/24%20Pages%20from%20NORMAWATI%20BINTI%20JASNI.pdf
http://eprints.usm.my/60448/
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score 13.211869