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Review of plasmonic fiber optic biochemical sensors: improving the limit of detection
by
Caucheteur, Christophe
, Albert, Jacques
, Guo, Tuan
in
bacteria
/ Biosensors
/ Bragg gratings
/ Chemical sensors
/ Chemistry Techniques, Analytical - instrumentation
/ Chemistry Techniques, Analytical - methods
/ coatings
/ Configurations
/ Crystal fibers
/ detection limit
/ DNA
/ DNA viruses
/ Engineering research
/ Equipment and supplies
/ Fiber Optic Technology - instrumentation
/ Fiber Optic Technology - methods
/ Fiber optics
/ Fibers
/ Figure of merit
/ glucose
/ gold
/ Heavy metals
/ Limit of Detection
/ Materials
/ Metal coatings
/ Nanoparticles
/ Optical fibers
/ Optical Imaging - methods
/ Photonic crystals
/ Polaritons
/ Polymers
/ proteins
/ Review
/ Sensors
/ Silver
/ Surface plasmon resonance
/ surveys
/ Thin films
/ Toxins
/ viruses
/ Wavelengths
2015
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Review of plasmonic fiber optic biochemical sensors: improving the limit of detection
by
Caucheteur, Christophe
, Albert, Jacques
, Guo, Tuan
in
bacteria
/ Biosensors
/ Bragg gratings
/ Chemical sensors
/ Chemistry Techniques, Analytical - instrumentation
/ Chemistry Techniques, Analytical - methods
/ coatings
/ Configurations
/ Crystal fibers
/ detection limit
/ DNA
/ DNA viruses
/ Engineering research
/ Equipment and supplies
/ Fiber Optic Technology - instrumentation
/ Fiber Optic Technology - methods
/ Fiber optics
/ Fibers
/ Figure of merit
/ glucose
/ gold
/ Heavy metals
/ Limit of Detection
/ Materials
/ Metal coatings
/ Nanoparticles
/ Optical fibers
/ Optical Imaging - methods
/ Photonic crystals
/ Polaritons
/ Polymers
/ proteins
/ Review
/ Sensors
/ Silver
/ Surface plasmon resonance
/ surveys
/ Thin films
/ Toxins
/ viruses
/ Wavelengths
2015
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Review of plasmonic fiber optic biochemical sensors: improving the limit of detection
by
Caucheteur, Christophe
, Albert, Jacques
, Guo, Tuan
in
bacteria
/ Biosensors
/ Bragg gratings
/ Chemical sensors
/ Chemistry Techniques, Analytical - instrumentation
/ Chemistry Techniques, Analytical - methods
/ coatings
/ Configurations
/ Crystal fibers
/ detection limit
/ DNA
/ DNA viruses
/ Engineering research
/ Equipment and supplies
/ Fiber Optic Technology - instrumentation
/ Fiber Optic Technology - methods
/ Fiber optics
/ Fibers
/ Figure of merit
/ glucose
/ gold
/ Heavy metals
/ Limit of Detection
/ Materials
/ Metal coatings
/ Nanoparticles
/ Optical fibers
/ Optical Imaging - methods
/ Photonic crystals
/ Polaritons
/ Polymers
/ proteins
/ Review
/ Sensors
/ Silver
/ Surface plasmon resonance
/ surveys
/ Thin films
/ Toxins
/ viruses
/ Wavelengths
2015
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Review of plasmonic fiber optic biochemical sensors: improving the limit of detection
Journal Article
Review of plasmonic fiber optic biochemical sensors: improving the limit of detection
2015
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Overview
This paper presents a brief overview of the technologies used to implement surface plasmon resonance (SPR) effects into fiber-optic sensors for chemical and biochemical applications and a survey of results reported over the last ten years. The performance indicators that are relevant for such systems, such as refractometric sensitivity, operating wavelength, and figure of merit (FOM), are discussed and listed in table form. A list of experimental results with reported limits of detection (LOD) for proteins, toxins, viruses, DNA, bacteria, glucose, and various chemicals is also provided for the same time period. Configurations discussed include fiber-optic analogues of the Kretschmann-Raether prism SPR platforms, made from geometry-modified multimode and single-mode optical fibers (unclad, side-polished, tapered, and U-shaped), long period fiber gratings (LPFG), tilted fiber Bragg gratings (TFBG), and specialty fibers (plastic or polymer, microstructured, and photonic crystal fibers). Configurations involving the excitation of surface plasmon polaritons (SPP) on continuous thin metal layers as well as those involving localized SPR (LSPR) phenomena in nanoparticle metal coatings of gold, silver, and other metals at visible and near-infrared wavelengths are described and compared quantitatively.
Publisher
Springer,Springer Nature B.V,Springer Berlin Heidelberg
Subject
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