Characterization of Graphene-based Flexible One-Side-Coil NFC Tag for Temperature Sensing

This paper proposes a flexible one-sided coil NFC (Near Field Communication) tag integrated with a temperature sensor, enabling real-time and battery-less temperature monitoring. The flexible tag antenna and temperature sensing circuit are made of graphene-based conductive materials and PET substrat...

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發表在:2024 IEEE SENSORS
Main Authors: Faudzi, N. M.; Razali, A. R.; Manaf, A. A.; Rahman, N. H. A.; Azlan, A. A.; Ibrahim, A.; Mozi, A. M.; Hafiz, S. M.; Sulaiman, S.; Rashid, N. A.
格式: Proceedings Paper
語言:English
出版: IEEE 2024
主題:
在線閱讀:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001417533500547
author Faudzi
N. M.; Razali
A. R.; Manaf
A. A.; Rahman
N. H. A.; Azlan
A. A.; Ibrahim
A.; Mozi
A. M.; Hafiz
S. M.; Sulaiman
S.; Rashid, N. A.
spellingShingle Faudzi
N. M.; Razali
A. R.; Manaf
A. A.; Rahman
N. H. A.; Azlan
A. A.; Ibrahim
A.; Mozi
A. M.; Hafiz
S. M.; Sulaiman
S.; Rashid, N. A.
Characterization of Graphene-based Flexible One-Side-Coil NFC Tag for Temperature Sensing
Engineering; Instruments & Instrumentation; Materials Science; Remote Sensing
author_facet Faudzi
N. M.; Razali
A. R.; Manaf
A. A.; Rahman
N. H. A.; Azlan
A. A.; Ibrahim
A.; Mozi
A. M.; Hafiz
S. M.; Sulaiman
S.; Rashid, N. A.
author_sort Faudzi
spelling Faudzi, N. M.; Razali, A. R.; Manaf, A. A.; Rahman, N. H. A.; Azlan, A. A.; Ibrahim, A.; Mozi, A. M.; Hafiz, S. M.; Sulaiman, S.; Rashid, N. A.
Characterization of Graphene-based Flexible One-Side-Coil NFC Tag for Temperature Sensing
2024 IEEE SENSORS
English
Proceedings Paper
This paper proposes a flexible one-sided coil NFC (Near Field Communication) tag integrated with a temperature sensor, enabling real-time and battery-less temperature monitoring. The flexible tag antenna and temperature sensing circuit are made of graphene-based conductive materials and PET substrate, ensuring the necessary flexibility to conform to different structures of items. The incorporation of a temperature sensor (NTC thermistor) with the NFC tag allows for continuous monitoring of the temperature, enabling early detection of any deviations from the desired temperature. Experimental results show that the tag performs well in monitoring temperatures across a wide range from 3 degrees C to 60 degrees C, covering cold, room, and hot temperature, indicating its suitability for various temperature monitoring applications. The temperature sensing application has been verified in food temperature monitoring, where the tag can be detected in the range of 1 to 2 cm while attached to various food structures and storage temperatures, proving the flexibility and reliability of the NFC tag.
IEEE
1930-0395

2024


10.1109/SENSORS60989.2024.10785234
Engineering; Instruments & Instrumentation; Materials Science; Remote Sensing

WOS:001417533500547
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001417533500547
title Characterization of Graphene-based Flexible One-Side-Coil NFC Tag for Temperature Sensing
title_short Characterization of Graphene-based Flexible One-Side-Coil NFC Tag for Temperature Sensing
title_full Characterization of Graphene-based Flexible One-Side-Coil NFC Tag for Temperature Sensing
title_fullStr Characterization of Graphene-based Flexible One-Side-Coil NFC Tag for Temperature Sensing
title_full_unstemmed Characterization of Graphene-based Flexible One-Side-Coil NFC Tag for Temperature Sensing
title_sort Characterization of Graphene-based Flexible One-Side-Coil NFC Tag for Temperature Sensing
container_title 2024 IEEE SENSORS
language English
format Proceedings Paper
description This paper proposes a flexible one-sided coil NFC (Near Field Communication) tag integrated with a temperature sensor, enabling real-time and battery-less temperature monitoring. The flexible tag antenna and temperature sensing circuit are made of graphene-based conductive materials and PET substrate, ensuring the necessary flexibility to conform to different structures of items. The incorporation of a temperature sensor (NTC thermistor) with the NFC tag allows for continuous monitoring of the temperature, enabling early detection of any deviations from the desired temperature. Experimental results show that the tag performs well in monitoring temperatures across a wide range from 3 degrees C to 60 degrees C, covering cold, room, and hot temperature, indicating its suitability for various temperature monitoring applications. The temperature sensing application has been verified in food temperature monitoring, where the tag can be detected in the range of 1 to 2 cm while attached to various food structures and storage temperatures, proving the flexibility and reliability of the NFC tag.
publisher IEEE
issn 1930-0395

publishDate 2024
container_volume
container_issue
doi_str_mv 10.1109/SENSORS60989.2024.10785234
topic Engineering; Instruments & Instrumentation; Materials Science; Remote Sensing
topic_facet Engineering; Instruments & Instrumentation; Materials Science; Remote Sensing
accesstype
id WOS:001417533500547
url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001417533500547
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