Comprehensive study on glycoprotein detection via polymer fiber sensor decorated with dome-like Ag nanoislands and ZnO nanorods

The surface plasmon resonance (SPR) based polymer fiber sensor is experimentally demonstrated via ZnO/Ag nano-heterostructure bi-layer coating with novel configuration. Glycoprotein detecting criteria is theoretically explained via changing the band gap and refractive index (RI) of ZnO, absorption o...

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Main Authors: Samavati, Zahra, Samavati, Alireza, Ismail, Ahmad Fauzi, A. Rahman, Mukhlis, Othman, Mohd. Hafiz Dzarfan
格式: Article
出版: Elsevier GmbH 2021
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在线阅读:http://eprints.utm.my/id/eprint/97685/
http://dx.doi.org/10.1016/j.ijleo.2021.166852
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spelling my.utm.976852022-10-25T10:43:32Z http://eprints.utm.my/id/eprint/97685/ Comprehensive study on glycoprotein detection via polymer fiber sensor decorated with dome-like Ag nanoislands and ZnO nanorods Samavati, Zahra Samavati, Alireza Ismail, Ahmad Fauzi A. Rahman, Mukhlis Othman, Mohd. Hafiz Dzarfan TP Chemical technology The surface plasmon resonance (SPR) based polymer fiber sensor is experimentally demonstrated via ZnO/Ag nano-heterostructure bi-layer coating with novel configuration. Glycoprotein detecting criteria is theoretically explained via changing the band gap and refractive index (RI) of ZnO, absorption of leaking light with analyte media, penetration depth of evanescence field, interaction of SPR with evanescence wave, hydrophilicity of ZnO surface and electrochemistry of the ZnO surface. The optical analysis of ZnO(nanorods)/Ag/polymer sample reveals that increasing the glycoprotein concentration, shifts (0.022 eV) the DL emission towards higher wavelength. Electron transferring from donor groups of glycoproteins when interact and bond with ZnO molecules are responsible for this shift. Plasmon resonance shift of ??: ~2.21º by increasing the glycoprotein dose from 0 to 0.209 ppm illustrates, interaction of SPR with evanescence wave. Sensitivity of developed polymer fiber sensor is calculated via analysis of output emission spectra and the maximum value achieved are 21 dB/ppm and 45.9 nm/ppm for intensity and wavelength respectively, having the minimum detection limit of 0.021 ppm. Our accurate designed fiber sensor can open up a new opportunity towards application in chemical and biological industries. Elsevier GmbH 2021 Article PeerReviewed Samavati, Zahra and Samavati, Alireza and Ismail, Ahmad Fauzi and A. Rahman, Mukhlis and Othman, Mohd. Hafiz Dzarfan (2021) Comprehensive study on glycoprotein detection via polymer fiber sensor decorated with dome-like Ag nanoislands and ZnO nanorods. Optik, 242 (NA). pp. 1-15. ISSN 0030-4026 http://dx.doi.org/10.1016/j.ijleo.2021.166852 DOI : 10.1016/j.ijleo.2021.166852
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TP Chemical technology
spellingShingle TP Chemical technology
Samavati, Zahra
Samavati, Alireza
Ismail, Ahmad Fauzi
A. Rahman, Mukhlis
Othman, Mohd. Hafiz Dzarfan
Comprehensive study on glycoprotein detection via polymer fiber sensor decorated with dome-like Ag nanoislands and ZnO nanorods
description The surface plasmon resonance (SPR) based polymer fiber sensor is experimentally demonstrated via ZnO/Ag nano-heterostructure bi-layer coating with novel configuration. Glycoprotein detecting criteria is theoretically explained via changing the band gap and refractive index (RI) of ZnO, absorption of leaking light with analyte media, penetration depth of evanescence field, interaction of SPR with evanescence wave, hydrophilicity of ZnO surface and electrochemistry of the ZnO surface. The optical analysis of ZnO(nanorods)/Ag/polymer sample reveals that increasing the glycoprotein concentration, shifts (0.022 eV) the DL emission towards higher wavelength. Electron transferring from donor groups of glycoproteins when interact and bond with ZnO molecules are responsible for this shift. Plasmon resonance shift of ??: ~2.21º by increasing the glycoprotein dose from 0 to 0.209 ppm illustrates, interaction of SPR with evanescence wave. Sensitivity of developed polymer fiber sensor is calculated via analysis of output emission spectra and the maximum value achieved are 21 dB/ppm and 45.9 nm/ppm for intensity and wavelength respectively, having the minimum detection limit of 0.021 ppm. Our accurate designed fiber sensor can open up a new opportunity towards application in chemical and biological industries.
format Article
author Samavati, Zahra
Samavati, Alireza
Ismail, Ahmad Fauzi
A. Rahman, Mukhlis
Othman, Mohd. Hafiz Dzarfan
author_facet Samavati, Zahra
Samavati, Alireza
Ismail, Ahmad Fauzi
A. Rahman, Mukhlis
Othman, Mohd. Hafiz Dzarfan
author_sort Samavati, Zahra
title Comprehensive study on glycoprotein detection via polymer fiber sensor decorated with dome-like Ag nanoislands and ZnO nanorods
title_short Comprehensive study on glycoprotein detection via polymer fiber sensor decorated with dome-like Ag nanoislands and ZnO nanorods
title_full Comprehensive study on glycoprotein detection via polymer fiber sensor decorated with dome-like Ag nanoislands and ZnO nanorods
title_fullStr Comprehensive study on glycoprotein detection via polymer fiber sensor decorated with dome-like Ag nanoislands and ZnO nanorods
title_full_unstemmed Comprehensive study on glycoprotein detection via polymer fiber sensor decorated with dome-like Ag nanoislands and ZnO nanorods
title_sort comprehensive study on glycoprotein detection via polymer fiber sensor decorated with dome-like ag nanoislands and zno nanorods
publisher Elsevier GmbH
publishDate 2021
url http://eprints.utm.my/id/eprint/97685/
http://dx.doi.org/10.1016/j.ijleo.2021.166852
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score 13.250246