Development Of UV Monitoring System Using Metal Oxide Based Sensor

The development of ultraviolet (UV) monitoring system using metal oxide-based sensor has been experimented throughout the project. The metal oxide-based sensor used is the fabricated titanium dioxide nanorod arrays. The sensor is a self-powered UV photosensor that can generate a certain amount of vo...

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Published in:IET Conference Proceedings
Main Author: Hafizuddin M.; Basori Y.I.; Yusoff M.M.; Mohd Razib M.A.; Malek M.F.; Mohamed R.; Kamarzaman A.H.
Format: Conference paper
Language:English
Published: Institution of Engineering and Technology 2022
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85174650400&doi=10.1049%2ficp.2022.2276&partnerID=40&md5=464ade3c67448518bab879c5cc71942e
id 2-s2.0-85174650400
spelling 2-s2.0-85174650400
Hafizuddin M.; Basori Y.I.; Yusoff M.M.; Mohd Razib M.A.; Malek M.F.; Mohamed R.; Kamarzaman A.H.
Development Of UV Monitoring System Using Metal Oxide Based Sensor
2022
IET Conference Proceedings
2022
10
10.1049/icp.2022.2276
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85174650400&doi=10.1049%2ficp.2022.2276&partnerID=40&md5=464ade3c67448518bab879c5cc71942e
The development of ultraviolet (UV) monitoring system using metal oxide-based sensor has been experimented throughout the project. The metal oxide-based sensor used is the fabricated titanium dioxide nanorod arrays. The sensor is a self-powered UV photosensor that can generate a certain amount of voltage when the illumination of UV radiation exists on the surface of the sensor. Furthermore, the fabricated UV photosensor is designed based on photoelectrochemical (PEC) structure. The performance of the sensor has been experimented by manipulating the quantity of the thin film layer deposited on the surface of the sensor that is used as spacer and applying two different electrolytes that is the solution of salt water (Na2SO4) and mineral water in order to observe the generated output voltage with respect to the distance of UV source to the TiO2 UV photo sensor. Moreover, an Arduino board has been used for monitoring the amount of voltage generated from the photo sensor. The TiO2 UV photo sensor generated the voltage up to 0.3V with standard UV lamp that produces UV radiation wavelength of 365-400nm for a single layer of thin film, electrolytes of Na2SO4 and 5 cm distance of UV lamp from the sensor. Further experiments offer some beneficial results with respect to its properties, that leads to the basis of theoretical and experimental for better understanding of fundamental physics and extensive applications of titanium dioxide (TiO2) related structures. © 2022 IET Conference Proceedings. All rights reserved.
Institution of Engineering and Technology
27324494
English
Conference paper

author Hafizuddin M.; Basori Y.I.; Yusoff M.M.; Mohd Razib M.A.; Malek M.F.; Mohamed R.; Kamarzaman A.H.
spellingShingle Hafizuddin M.; Basori Y.I.; Yusoff M.M.; Mohd Razib M.A.; Malek M.F.; Mohamed R.; Kamarzaman A.H.
Development Of UV Monitoring System Using Metal Oxide Based Sensor
author_facet Hafizuddin M.; Basori Y.I.; Yusoff M.M.; Mohd Razib M.A.; Malek M.F.; Mohamed R.; Kamarzaman A.H.
author_sort Hafizuddin M.; Basori Y.I.; Yusoff M.M.; Mohd Razib M.A.; Malek M.F.; Mohamed R.; Kamarzaman A.H.
title Development Of UV Monitoring System Using Metal Oxide Based Sensor
title_short Development Of UV Monitoring System Using Metal Oxide Based Sensor
title_full Development Of UV Monitoring System Using Metal Oxide Based Sensor
title_fullStr Development Of UV Monitoring System Using Metal Oxide Based Sensor
title_full_unstemmed Development Of UV Monitoring System Using Metal Oxide Based Sensor
title_sort Development Of UV Monitoring System Using Metal Oxide Based Sensor
publishDate 2022
container_title IET Conference Proceedings
container_volume 2022
container_issue 10
doi_str_mv 10.1049/icp.2022.2276
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85174650400&doi=10.1049%2ficp.2022.2276&partnerID=40&md5=464ade3c67448518bab879c5cc71942e
description The development of ultraviolet (UV) monitoring system using metal oxide-based sensor has been experimented throughout the project. The metal oxide-based sensor used is the fabricated titanium dioxide nanorod arrays. The sensor is a self-powered UV photosensor that can generate a certain amount of voltage when the illumination of UV radiation exists on the surface of the sensor. Furthermore, the fabricated UV photosensor is designed based on photoelectrochemical (PEC) structure. The performance of the sensor has been experimented by manipulating the quantity of the thin film layer deposited on the surface of the sensor that is used as spacer and applying two different electrolytes that is the solution of salt water (Na2SO4) and mineral water in order to observe the generated output voltage with respect to the distance of UV source to the TiO2 UV photo sensor. Moreover, an Arduino board has been used for monitoring the amount of voltage generated from the photo sensor. The TiO2 UV photo sensor generated the voltage up to 0.3V with standard UV lamp that produces UV radiation wavelength of 365-400nm for a single layer of thin film, electrolytes of Na2SO4 and 5 cm distance of UV lamp from the sensor. Further experiments offer some beneficial results with respect to its properties, that leads to the basis of theoretical and experimental for better understanding of fundamental physics and extensive applications of titanium dioxide (TiO2) related structures. © 2022 IET Conference Proceedings. All rights reserved.
publisher Institution of Engineering and Technology
issn 27324494
language English
format Conference paper
accesstype
record_format scopus
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