Original Research
Wearable flexible Kapton-graphene electromagnetic sensors
M. Bouherour
a
A. Nabila
a
L. Z. Meryem
a
T. Nourelhouda
a
R. Sawsen
a

aLaboratory of Electronic Materials Studies for Medical Applications

(LEMEAMED), Faculty of Technology Sciences, Departement of Electronic,

Frères MENTOURI Constantine University (FST-UMC), Algeria

bDepartment of Physics Chemistry, Ecole normal supérieure‘’Assia DJEBAR’’

Constantine (ENSC), Algeria


Journal of Optoelectronic and Biomedical Materials 2024, 16(2),89-98; https://doi.org/10.15251/JOBM.2024.162.89
Submitted:Feb 13, 2024
Accepted:Apr 25, 2024
Published:May 13, 2024
+
Cite This Article
M. Bouherour ,A. Nabila ,L. Z. Meryem ,T. Nourelhouda ,R. Sawsen . (2024). Journal of Optoelectronic and Biomedical Materials. Wearable flexible Kapton-graphene electromagnetic sensors, 16(2), ,89-98. https://doi.org/10.15251/JOBM.2024.162.89
Abstract

This research is dedicated to the development of a new technology for a quick diagnosis of virial virus, using electromagnetic technology facilitated by either a Rectangular Patch Resonator (RPR) or a Wearable Flexible Sensor (WFS) designed for non-invasive viral disease detection, including Nano-virus, and macro-virus. These devices is tailored for a precise and non-invasive detection of a wide array of viruses. To enhance diagnostic precision, an electromagnetic sensor was meticulously explored and simulated, to be capable of detecting and identifying even the most minuscule viruses. Employing numerical modeling with a focus on the 10 GHz to 20 GHz frequency range. We hold a strong sense of optimism regarding this sensor's potential for non-invasive virus detection.

Extensive simulations conducted throughout this study have underscored the WFS's selectivity across all viruses, boasting an exceptional limit of detection and sensitivity.

Moreover, the WFS exhibited the capability to distinguish between varying infection percentages, each corresponding to a distinct reflection pattern.

©2026 by the authors. Submitted for possible open access publication under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
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