Design and development of optimized scattering structures and fabrication using stereolithography apparatus

A disordered structure is the one which causes multiple scattering events to the light entering the medium and as a result of which it undergoes a random path of propagation. There has been a growing interest around random scattering structures due to their increased effectiveness in light loc...

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Main Author: Tan, Yi Xiang
Other Authors: Murukeshan Vadakke Matham
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2024
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Online Access:https://hdl.handle.net/10356/177760
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Institution: Nanyang Technological University
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spelling sg-ntu-dr.10356-1777602024-06-01T16:54:04Z Design and development of optimized scattering structures and fabrication using stereolithography apparatus Tan, Yi Xiang Murukeshan Vadakke Matham School of Mechanical and Aerospace Engineering MMurukeshan@ntu.edu.sg Engineering A disordered structure is the one which causes multiple scattering events to the light entering the medium and as a result of which it undergoes a random path of propagation. There has been a growing interest around random scattering structures due to their increased effectiveness in light localisation. In this project, the design of random scattering substrates is done using Computer Aided Design (CAD) software and are fabricated using Stereolithography 3D printing technique. The optimisation of random substrates is carried out by varying the dimensions, orientations and density of the shapes with a specific grid pattern. 3D printed substrates are characterised using confocal microscopy and the effectiveness of the light localisation is quantified using Coherent Backscattering (CBS) measurements. The concept of using randomness for effective light localisation can be incorporated to sensing applications including microfluidics. Here, we use the substrates with random microfluidic channels for photoluminescence spectroscopy based chemical sensing of Rhodamine 6G. In short, this research is focused on investigating the fundamental performance of light localisation in 3D printed micro-scale random scattering structures and their application in microfluidic sensing. Bachelor's degree 2024-05-31T01:43:29Z 2024-05-31T01:43:29Z 2024 Final Year Project (FYP) Tan, Y. X. (2024). Design and development of optimized scattering structures and fabrication using stereolithography apparatus. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/177760 https://hdl.handle.net/10356/177760 en A110 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
Tan, Yi Xiang
Design and development of optimized scattering structures and fabrication using stereolithography apparatus
description A disordered structure is the one which causes multiple scattering events to the light entering the medium and as a result of which it undergoes a random path of propagation. There has been a growing interest around random scattering structures due to their increased effectiveness in light localisation. In this project, the design of random scattering substrates is done using Computer Aided Design (CAD) software and are fabricated using Stereolithography 3D printing technique. The optimisation of random substrates is carried out by varying the dimensions, orientations and density of the shapes with a specific grid pattern. 3D printed substrates are characterised using confocal microscopy and the effectiveness of the light localisation is quantified using Coherent Backscattering (CBS) measurements. The concept of using randomness for effective light localisation can be incorporated to sensing applications including microfluidics. Here, we use the substrates with random microfluidic channels for photoluminescence spectroscopy based chemical sensing of Rhodamine 6G. In short, this research is focused on investigating the fundamental performance of light localisation in 3D printed micro-scale random scattering structures and their application in microfluidic sensing.
author2 Murukeshan Vadakke Matham
author_facet Murukeshan Vadakke Matham
Tan, Yi Xiang
format Final Year Project
author Tan, Yi Xiang
author_sort Tan, Yi Xiang
title Design and development of optimized scattering structures and fabrication using stereolithography apparatus
title_short Design and development of optimized scattering structures and fabrication using stereolithography apparatus
title_full Design and development of optimized scattering structures and fabrication using stereolithography apparatus
title_fullStr Design and development of optimized scattering structures and fabrication using stereolithography apparatus
title_full_unstemmed Design and development of optimized scattering structures and fabrication using stereolithography apparatus
title_sort design and development of optimized scattering structures and fabrication using stereolithography apparatus
publisher Nanyang Technological University
publishDate 2024
url https://hdl.handle.net/10356/177760
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