White light emission from Eu3+, Tb3+ ions and ZnO nanocrystals embedded in SiO2 film

This work serves as a continuation of a previous study done. In that study, a new method was researched into to produce white light emission from Zinc Oxide nanocrystals (ZnO-nc), Europium (Eu3+) RE ions, and Terbium (Tb3+) RE ions in a Silicon dioxide (SiO2) substrate. An excitation source of a sin...

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Main Author: Khor, Kai Sherng
Other Authors: Kantisara Pita
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2020
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Online Access:https://hdl.handle.net/10356/138892
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Institution: Nanyang Technological University
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spelling sg-ntu-dr.10356-1388922023-07-07T18:35:30Z White light emission from Eu3+, Tb3+ ions and ZnO nanocrystals embedded in SiO2 film Khor, Kai Sherng Kantisara Pita School of Electrical and Electronic Engineering ekpita@ntu.edu.sg Engineering This work serves as a continuation of a previous study done. In that study, a new method was researched into to produce white light emission from Zinc Oxide nanocrystals (ZnO-nc), Europium (Eu3+) RE ions, and Terbium (Tb3+) RE ions in a Silicon dioxide (SiO2) substrate. An excitation source of a single wavelength is required to achieve this instead of 3 different wavelengths. This is possible as only the ZnO-nc is excited by the excitation source. The two RE ions are excited by the energy transfer from ZnO-nc when it de-excites. The red, green, and blue emissions from the 3 constituent materials results in the production of white light. In fact, any colour in the International Commission on Illumination (CIE) colour space is theoretically achievable. This work improves on the previous study by finding a quicker and more efficient method of predicting the concentration of the RE ions required to be doped to a constant ZnO-nc concentration to produce a sample with emission of any desired colour. 2 models were used to achieve this, namely the power series model and the multivariate adaptive regression splines (MARS) algorithm. Both models have some variations in results as compared to the previous study, possible due to the lack of sufficient training data. However, they proved that it is possible to achieve a faster and more efficient method. Improvements on these models could bring about a system that allows for the accurate fabrication of a sample for any desired colour. Bachelor of Engineering (Electrical and Electronic Engineering) 2020-05-13T09:08:05Z 2020-05-13T09:08:05Z 2020 Final Year Project (FYP) https://hdl.handle.net/10356/138892 en A2102-191 application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering
spellingShingle Engineering
Khor, Kai Sherng
White light emission from Eu3+, Tb3+ ions and ZnO nanocrystals embedded in SiO2 film
description This work serves as a continuation of a previous study done. In that study, a new method was researched into to produce white light emission from Zinc Oxide nanocrystals (ZnO-nc), Europium (Eu3+) RE ions, and Terbium (Tb3+) RE ions in a Silicon dioxide (SiO2) substrate. An excitation source of a single wavelength is required to achieve this instead of 3 different wavelengths. This is possible as only the ZnO-nc is excited by the excitation source. The two RE ions are excited by the energy transfer from ZnO-nc when it de-excites. The red, green, and blue emissions from the 3 constituent materials results in the production of white light. In fact, any colour in the International Commission on Illumination (CIE) colour space is theoretically achievable. This work improves on the previous study by finding a quicker and more efficient method of predicting the concentration of the RE ions required to be doped to a constant ZnO-nc concentration to produce a sample with emission of any desired colour. 2 models were used to achieve this, namely the power series model and the multivariate adaptive regression splines (MARS) algorithm. Both models have some variations in results as compared to the previous study, possible due to the lack of sufficient training data. However, they proved that it is possible to achieve a faster and more efficient method. Improvements on these models could bring about a system that allows for the accurate fabrication of a sample for any desired colour.
author2 Kantisara Pita
author_facet Kantisara Pita
Khor, Kai Sherng
format Final Year Project
author Khor, Kai Sherng
author_sort Khor, Kai Sherng
title White light emission from Eu3+, Tb3+ ions and ZnO nanocrystals embedded in SiO2 film
title_short White light emission from Eu3+, Tb3+ ions and ZnO nanocrystals embedded in SiO2 film
title_full White light emission from Eu3+, Tb3+ ions and ZnO nanocrystals embedded in SiO2 film
title_fullStr White light emission from Eu3+, Tb3+ ions and ZnO nanocrystals embedded in SiO2 film
title_full_unstemmed White light emission from Eu3+, Tb3+ ions and ZnO nanocrystals embedded in SiO2 film
title_sort white light emission from eu3+, tb3+ ions and zno nanocrystals embedded in sio2 film
publisher Nanyang Technological University
publishDate 2020
url https://hdl.handle.net/10356/138892
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