Highly sensitive adulteration detection in kelulut honey utilizing fiber Bragg grating technology with Q-switched pulse erbium-doped fiber laser and innovative spider silk substrate

The growing field of photonics has seen significant developments in optical pulse fiber-based sensing technologies. In this research, a novel fiber Bragg grating using a Q-switched erbium-doped fiber laser source and innovative spider silk as a base material is presented, specifically designed for...

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Main Authors: Muhammad, Nur Ainnaa Mardhiah, Awang, Noor Azura, A. Talip, Balkis, Zalkepali, Noor Ummi Hazirah Hani, Imam Supaat, Murni
Format: Article
Language:en
Published: elsevier 2024
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Online Access:http://eprints.uthm.edu.my/12546/1/J18050_8c465c5c35538ddf57f4f6283139df90.pdf
http://eprints.uthm.edu.my/12546/
https://doi.org/10.1016/j.sna.2024.115656
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author Muhammad, Nur Ainnaa Mardhiah
Awang, Noor Azura
A. Talip, Balkis
Zalkepali, Noor Ummi Hazirah Hani
Imam Supaat, Murni
author_facet Muhammad, Nur Ainnaa Mardhiah
Awang, Noor Azura
A. Talip, Balkis
Zalkepali, Noor Ummi Hazirah Hani
Imam Supaat, Murni
author_sort Muhammad, Nur Ainnaa Mardhiah
building UTHM Library
collection Institutional Repository
content_provider Universiti Tun Hussein Onn Malaysia
content_source UTHM Institutional Repository
continent Asia
country Malaysia
description The growing field of photonics has seen significant developments in optical pulse fiber-based sensing technologies. In this research, a novel fiber Bragg grating using a Q-switched erbium-doped fiber laser source and innovative spider silk as a base material is presented, specifically designed for the detection of adulteration in pure kelulut honey. Kelulut honey has attracted much attention from Malaysian researchers as it is a highly prized, versatile local health remedy. During the experimental setup, concentrations of the adulterant isoglucose ranging from 0 % to 8 % and 10–50 % were intentionally added to the pure kelulut honey. The sensor showed remarkable sensitivity and detected subtle shifts in both the wavelength and radio frequency spectrum. The experimental results obtained emphasize the effectiveness of the proposed sensor and demonstrate its exceptional sensitivity in detecting adulteration in pure kelulut honey. This inherent property makes the derived pulse fiber laser sensor a promising tool for various applications in clinical detection and diagnosis as well as in the food industry. The results presented here not only contribute to the field of photonics but also have the potential to advance the quality control and authenticity assessment of kelulut honey in various fields.
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spelling my.uthm.eprints-125462025-03-13T23:52:57Z http://eprints.uthm.edu.my/12546/ Highly sensitive adulteration detection in kelulut honey utilizing fiber Bragg grating technology with Q-switched pulse erbium-doped fiber laser and innovative spider silk substrate Muhammad, Nur Ainnaa Mardhiah Awang, Noor Azura A. Talip, Balkis Zalkepali, Noor Ummi Hazirah Hani Imam Supaat, Murni QC Physics The growing field of photonics has seen significant developments in optical pulse fiber-based sensing technologies. In this research, a novel fiber Bragg grating using a Q-switched erbium-doped fiber laser source and innovative spider silk as a base material is presented, specifically designed for the detection of adulteration in pure kelulut honey. Kelulut honey has attracted much attention from Malaysian researchers as it is a highly prized, versatile local health remedy. During the experimental setup, concentrations of the adulterant isoglucose ranging from 0 % to 8 % and 10–50 % were intentionally added to the pure kelulut honey. The sensor showed remarkable sensitivity and detected subtle shifts in both the wavelength and radio frequency spectrum. The experimental results obtained emphasize the effectiveness of the proposed sensor and demonstrate its exceptional sensitivity in detecting adulteration in pure kelulut honey. This inherent property makes the derived pulse fiber laser sensor a promising tool for various applications in clinical detection and diagnosis as well as in the food industry. The results presented here not only contribute to the field of photonics but also have the potential to advance the quality control and authenticity assessment of kelulut honey in various fields. elsevier 2024 Article PeerReviewed text en http://eprints.uthm.edu.my/12546/1/J18050_8c465c5c35538ddf57f4f6283139df90.pdf Muhammad, Nur Ainnaa Mardhiah and Awang, Noor Azura and A. Talip, Balkis and Zalkepali, Noor Ummi Hazirah Hani and Imam Supaat, Murni (2024) Highly sensitive adulteration detection in kelulut honey utilizing fiber Bragg grating technology with Q-switched pulse erbium-doped fiber laser and innovative spider silk substrate. Sensors and Actuators: A. Physical, 376. pp. 1-15. https://doi.org/10.1016/j.sna.2024.115656
spellingShingle QC Physics
Muhammad, Nur Ainnaa Mardhiah
Awang, Noor Azura
A. Talip, Balkis
Zalkepali, Noor Ummi Hazirah Hani
Imam Supaat, Murni
Highly sensitive adulteration detection in kelulut honey utilizing fiber Bragg grating technology with Q-switched pulse erbium-doped fiber laser and innovative spider silk substrate
title Highly sensitive adulteration detection in kelulut honey utilizing fiber Bragg grating technology with Q-switched pulse erbium-doped fiber laser and innovative spider silk substrate
title_full Highly sensitive adulteration detection in kelulut honey utilizing fiber Bragg grating technology with Q-switched pulse erbium-doped fiber laser and innovative spider silk substrate
title_fullStr Highly sensitive adulteration detection in kelulut honey utilizing fiber Bragg grating technology with Q-switched pulse erbium-doped fiber laser and innovative spider silk substrate
title_full_unstemmed Highly sensitive adulteration detection in kelulut honey utilizing fiber Bragg grating technology with Q-switched pulse erbium-doped fiber laser and innovative spider silk substrate
title_short Highly sensitive adulteration detection in kelulut honey utilizing fiber Bragg grating technology with Q-switched pulse erbium-doped fiber laser and innovative spider silk substrate
title_sort highly sensitive adulteration detection in kelulut honey utilizing fiber bragg grating technology with q-switched pulse erbium-doped fiber laser and innovative spider silk substrate
topic QC Physics
url http://eprints.uthm.edu.my/12546/1/J18050_8c465c5c35538ddf57f4f6283139df90.pdf
http://eprints.uthm.edu.my/12546/
https://doi.org/10.1016/j.sna.2024.115656
url_provider http://eprints.uthm.edu.my/