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Plasmonic Refractive Index Sensor Enhanced with Chitosan/Au Bilayer Thin Film for Dopamine Detection

Surface plasmonic sensors have received considerable attention, found extensive applications, and outperformed conventional optical sensors. In this work, biopolymer chitosan (CS) was used to prepare the bilayer structure (CS/Au) of a plasmonic refractive index sensor for dopamine (DA) detection. Th...

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Autores principales: Eddin, Faten Bashar Kamal, Fen, Yap Wing, Liew, Josephine Ying Chyi, Daniyal, Wan Mohd Ebtisyam Mustaqim Mohd
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9775628/
https://www.ncbi.nlm.nih.gov/pubmed/36551091
http://dx.doi.org/10.3390/bios12121124
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author Eddin, Faten Bashar Kamal
Fen, Yap Wing
Liew, Josephine Ying Chyi
Daniyal, Wan Mohd Ebtisyam Mustaqim Mohd
author_facet Eddin, Faten Bashar Kamal
Fen, Yap Wing
Liew, Josephine Ying Chyi
Daniyal, Wan Mohd Ebtisyam Mustaqim Mohd
author_sort Eddin, Faten Bashar Kamal
collection PubMed
description Surface plasmonic sensors have received considerable attention, found extensive applications, and outperformed conventional optical sensors. In this work, biopolymer chitosan (CS) was used to prepare the bilayer structure (CS/Au) of a plasmonic refractive index sensor for dopamine (DA) detection. The sensing characteristics of the developed plasmonic sensor were evaluated. Increasing DA concentrations significantly shifted the SPR dips. The sensor exhibited stability and a refractive index sensitivity of 8.850°/RIU in the linear range 0.1 nM to 1 µM with a detection limit of 0.007 nM and affinity constant of 1.383 × 10(8) M(−1). The refractive index and thickness of the CS/Au structure were measured simultaneously by fitting the obtained experimental findings to theoretical data based on Fresnel equations. The fitting yielded the refractive index values n (1.5350 ± 0.0001) and k (0.0150 ± 0.0001) for the CS layer contacting 0.1 nM of DA, and the thickness, d was (15.00 ± 0.01) nm. Then, both n and d values increased by increasing DA concentrations. In addition, the changes in the FTIR spectrum and the variations in sensor surface roughness and structure obtained by AFM analysis confirmed DA adsorption on the sensing layer. Based on these observations, CS/Au bilayer has enhanced the performance of this plasmonic sensor, which showed promising importance as a simple, low-cost, and reliable platform for DA sensing.
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spelling pubmed-97756282022-12-23 Plasmonic Refractive Index Sensor Enhanced with Chitosan/Au Bilayer Thin Film for Dopamine Detection Eddin, Faten Bashar Kamal Fen, Yap Wing Liew, Josephine Ying Chyi Daniyal, Wan Mohd Ebtisyam Mustaqim Mohd Biosensors (Basel) Article Surface plasmonic sensors have received considerable attention, found extensive applications, and outperformed conventional optical sensors. In this work, biopolymer chitosan (CS) was used to prepare the bilayer structure (CS/Au) of a plasmonic refractive index sensor for dopamine (DA) detection. The sensing characteristics of the developed plasmonic sensor were evaluated. Increasing DA concentrations significantly shifted the SPR dips. The sensor exhibited stability and a refractive index sensitivity of 8.850°/RIU in the linear range 0.1 nM to 1 µM with a detection limit of 0.007 nM and affinity constant of 1.383 × 10(8) M(−1). The refractive index and thickness of the CS/Au structure were measured simultaneously by fitting the obtained experimental findings to theoretical data based on Fresnel equations. The fitting yielded the refractive index values n (1.5350 ± 0.0001) and k (0.0150 ± 0.0001) for the CS layer contacting 0.1 nM of DA, and the thickness, d was (15.00 ± 0.01) nm. Then, both n and d values increased by increasing DA concentrations. In addition, the changes in the FTIR spectrum and the variations in sensor surface roughness and structure obtained by AFM analysis confirmed DA adsorption on the sensing layer. Based on these observations, CS/Au bilayer has enhanced the performance of this plasmonic sensor, which showed promising importance as a simple, low-cost, and reliable platform for DA sensing. MDPI 2022-12-03 /pmc/articles/PMC9775628/ /pubmed/36551091 http://dx.doi.org/10.3390/bios12121124 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Eddin, Faten Bashar Kamal
Fen, Yap Wing
Liew, Josephine Ying Chyi
Daniyal, Wan Mohd Ebtisyam Mustaqim Mohd
Plasmonic Refractive Index Sensor Enhanced with Chitosan/Au Bilayer Thin Film for Dopamine Detection
title Plasmonic Refractive Index Sensor Enhanced with Chitosan/Au Bilayer Thin Film for Dopamine Detection
title_full Plasmonic Refractive Index Sensor Enhanced with Chitosan/Au Bilayer Thin Film for Dopamine Detection
title_fullStr Plasmonic Refractive Index Sensor Enhanced with Chitosan/Au Bilayer Thin Film for Dopamine Detection
title_full_unstemmed Plasmonic Refractive Index Sensor Enhanced with Chitosan/Au Bilayer Thin Film for Dopamine Detection
title_short Plasmonic Refractive Index Sensor Enhanced with Chitosan/Au Bilayer Thin Film for Dopamine Detection
title_sort plasmonic refractive index sensor enhanced with chitosan/au bilayer thin film for dopamine detection
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9775628/
https://www.ncbi.nlm.nih.gov/pubmed/36551091
http://dx.doi.org/10.3390/bios12121124
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AT liewjosephineyingchyi plasmonicrefractiveindexsensorenhancedwithchitosanaubilayerthinfilmfordopaminedetection
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