A novel U-bent plastic optical fibre local surface plasmon resonance sensor based on a graphene and silver nanoparticle hybrid structure

In this work, we have presented a novel local surface plasmon resonance (LSPR) sensor based on the U-bent plastic optical fibre (U-POF). Firstly, a layer of discontinuous silver (Ag) thin film was deposited on the U-POF and then the Ag film was covered by a layer of cladding synthesized by polyvinyl...

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Published inJournal of physics. D, Applied physics Vol. 50; no. 16; pp. 165105 - 165114
Main Authors Jiang, Shouzhen, Li, Zhe, Zhang, Chao, Gao, Saisai, Li, Zhen, Qiu, Hengwei, Li, Chonghui, Yang, Cheng, Liu, Mei, Liu, Yanjun
Format Journal Article
LanguageEnglish
Published IOP Publishing 26.04.2017
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ISSN0022-3727
1361-6463
DOI10.1088/1361-6463/aa628c

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Abstract In this work, we have presented a novel local surface plasmon resonance (LSPR) sensor based on the U-bent plastic optical fibre (U-POF). Firstly, a layer of discontinuous silver (Ag) thin film was deposited on the U-POF and then the Ag film was covered by a layer of cladding synthesized by polyvinyl alcohol (PVA), graphene and silver nanoparticles forming the PVA/G/AgNPs@Ag film. The normalized transmittance spectrum of the LSPR sensor have been collected in a range of the refractive index (RI) from 1.330 to 1.3657 in ethanol solution, and 700.3 nm/RIU sensitivity of the developed LSPR sensor has been demonstrated. By experiments, we demonstrated that the graphene could improve the sensitivity of the LSPR sensor and delay the oxidation process of the AgNPs effectively to keep the stability of the LSPR sensor. The LSPR sensor also exhibited good sensitivity and linearity in the detection of glucose solutions. This work shows that the developed LSPR sensor may have promising applications in biosensing.
AbstractList In this work, we have presented a novel local surface plasmon resonance (LSPR) sensor based on the U-bent plastic optical fibre (U-POF). Firstly, a layer of discontinuous silver (Ag) thin film was deposited on the U-POF and then the Ag film was covered by a layer of cladding synthesized by polyvinyl alcohol (PVA), graphene and silver nanoparticles forming the PVA/G/AgNPs@Ag film. The normalized transmittance spectrum of the LSPR sensor have been collected in a range of the refractive index (RI) from 1.330 to 1.3657 in ethanol solution, and 700.3 nm/RIU sensitivity of the developed LSPR sensor has been demonstrated. By experiments, we demonstrated that the graphene could improve the sensitivity of the LSPR sensor and delay the oxidation process of the AgNPs effectively to keep the stability of the LSPR sensor. The LSPR sensor also exhibited good sensitivity and linearity in the detection of glucose solutions. This work shows that the developed LSPR sensor may have promising applications in biosensing.
Author Qiu, Hengwei
Yang, Cheng
Li, Zhen
Li, Zhe
Zhang, Chao
Liu, Yanjun
Gao, Saisai
Jiang, Shouzhen
Li, Chonghui
Liu, Mei
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  organization: Shandong Normal University School of Physics and Electronics, Jinan 250014, People's Republic of China
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  organization: Shandong Normal University Institute of Materials and Clean Energy, Jinan 250014, People's Republic of China
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  organization: Shandong Normal University School of Physics and Electronics, Jinan 250014, People's Republic of China
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  organization: Shandong Normal University Institute of Materials and Clean Energy, Jinan 250014, People's Republic of China
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  organization: Shandong Normal University Institute of Materials and Clean Energy, Jinan 250014, People's Republic of China
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  givenname: Yanjun
  surname: Liu
  fullname: Liu, Yanjun
  organization: Southern University of Science and Technology Department of Electrical and Electronic Engineering, Shenzhen 518055, People's Republic of China
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Snippet In this work, we have presented a novel local surface plasmon resonance (LSPR) sensor based on the U-bent plastic optical fibre (U-POF). Firstly, a layer of...
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StartPage 165105
SubjectTerms graphene
local surface plasmon resonance
plastic optical fibre
sensitivity
sensor
stability
Title A novel U-bent plastic optical fibre local surface plasmon resonance sensor based on a graphene and silver nanoparticle hybrid structure
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