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Photonic crystal nanostructure as a photodetector for NaCl solution monitoring: theoretical approach

In this research, we have a theoretical simple and highly sensitive sodium chloride (NaCl) sensor based on the excitation of Tamm plasmon resonance through a one-dimensional photonic crystal structure. The configuration of the proposed design was, [prism/gold (Au)/water cavity/silicon (Si)/calcium f...

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Autores principales: Almawgani, Abdulkarem H. M., Elsayed, Hussein A., Mehaney, Ahmed, Taha, T. A., Alrowaili, Ziyad Awadh, Ali, Ghassan Ahmed, Sabra, Walied, Asaduzzaman, Sayed, Ahmed, Ashour M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9969983/
https://www.ncbi.nlm.nih.gov/pubmed/36860529
http://dx.doi.org/10.1039/d3ra00308f
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author Almawgani, Abdulkarem H. M.
Elsayed, Hussein A.
Mehaney, Ahmed
Taha, T. A.
Alrowaili, Ziyad Awadh
Ali, Ghassan Ahmed
Sabra, Walied
Asaduzzaman, Sayed
Ahmed, Ashour M.
author_facet Almawgani, Abdulkarem H. M.
Elsayed, Hussein A.
Mehaney, Ahmed
Taha, T. A.
Alrowaili, Ziyad Awadh
Ali, Ghassan Ahmed
Sabra, Walied
Asaduzzaman, Sayed
Ahmed, Ashour M.
author_sort Almawgani, Abdulkarem H. M.
collection PubMed
description In this research, we have a theoretical simple and highly sensitive sodium chloride (NaCl) sensor based on the excitation of Tamm plasmon resonance through a one-dimensional photonic crystal structure. The configuration of the proposed design was, [prism/gold (Au)/water cavity/silicon (Si)/calcium fluoride (CaF(2))(10)/glass substrate]. The estimations are mainly investigated based on both the optical properties of the constituent materials and the transfer matrix method as well. The suggested sensor is designed for monitoring the salinity of water by detecting the concentration of NaCl solution through near-infrared (IR) wavelengths. The reflectance numerical analysis showed the Tamm plasmon resonance. As the water cavity is filled with NaCl of concentrations ranging from 0 g l(−1) to 60 g l(−1), Tamm resonance is shifted towards longer wavelengths. Furthermore, the suggested sensor provides a relatively high performance compared to its photonic crystal counterparts and photonic crystal fiber designs. Meanwhile, the sensitivity and detection limit of the suggested sensor could reach the values of 24 700 nm per RIU (0.576 nm (g l)(−1)) and 0.217 g l(−1), respectively. Therefore, the suggested design could be of interest as a promising platform for sensing and monitoring NaCl concentrations and water salinity as well.
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spelling pubmed-99699832023-02-28 Photonic crystal nanostructure as a photodetector for NaCl solution monitoring: theoretical approach Almawgani, Abdulkarem H. M. Elsayed, Hussein A. Mehaney, Ahmed Taha, T. A. Alrowaili, Ziyad Awadh Ali, Ghassan Ahmed Sabra, Walied Asaduzzaman, Sayed Ahmed, Ashour M. RSC Adv Chemistry In this research, we have a theoretical simple and highly sensitive sodium chloride (NaCl) sensor based on the excitation of Tamm plasmon resonance through a one-dimensional photonic crystal structure. The configuration of the proposed design was, [prism/gold (Au)/water cavity/silicon (Si)/calcium fluoride (CaF(2))(10)/glass substrate]. The estimations are mainly investigated based on both the optical properties of the constituent materials and the transfer matrix method as well. The suggested sensor is designed for monitoring the salinity of water by detecting the concentration of NaCl solution through near-infrared (IR) wavelengths. The reflectance numerical analysis showed the Tamm plasmon resonance. As the water cavity is filled with NaCl of concentrations ranging from 0 g l(−1) to 60 g l(−1), Tamm resonance is shifted towards longer wavelengths. Furthermore, the suggested sensor provides a relatively high performance compared to its photonic crystal counterparts and photonic crystal fiber designs. Meanwhile, the sensitivity and detection limit of the suggested sensor could reach the values of 24 700 nm per RIU (0.576 nm (g l)(−1)) and 0.217 g l(−1), respectively. Therefore, the suggested design could be of interest as a promising platform for sensing and monitoring NaCl concentrations and water salinity as well. The Royal Society of Chemistry 2023-02-27 /pmc/articles/PMC9969983/ /pubmed/36860529 http://dx.doi.org/10.1039/d3ra00308f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Almawgani, Abdulkarem H. M.
Elsayed, Hussein A.
Mehaney, Ahmed
Taha, T. A.
Alrowaili, Ziyad Awadh
Ali, Ghassan Ahmed
Sabra, Walied
Asaduzzaman, Sayed
Ahmed, Ashour M.
Photonic crystal nanostructure as a photodetector for NaCl solution monitoring: theoretical approach
title Photonic crystal nanostructure as a photodetector for NaCl solution monitoring: theoretical approach
title_full Photonic crystal nanostructure as a photodetector for NaCl solution monitoring: theoretical approach
title_fullStr Photonic crystal nanostructure as a photodetector for NaCl solution monitoring: theoretical approach
title_full_unstemmed Photonic crystal nanostructure as a photodetector for NaCl solution monitoring: theoretical approach
title_short Photonic crystal nanostructure as a photodetector for NaCl solution monitoring: theoretical approach
title_sort photonic crystal nanostructure as a photodetector for nacl solution monitoring: theoretical approach
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9969983/
https://www.ncbi.nlm.nih.gov/pubmed/36860529
http://dx.doi.org/10.1039/d3ra00308f
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