£82.06

Springer Surface Plasmon Resonance Sensors: A Materials Guide to Design, Characterization, Optimization, and Usage: 70 (Springer Series in Surface Sciences, 70)

Price data checked 1 day ago

View at Amazon

We'll watch every seller, every day. One email when your price arrives.

About as cheap as it gets. The only time it was cheaper was 1 month ago.

£82 today · all-time low £82 (Mar 2026) · usually £83

NEW HERE?

Amazon shows you one price. We show you all of them.

Tosheroon watches Amazon prices so you don't have to. Every product on Amazon has a price history — we make it visible. Set the price you'd actually pay, and we'll email you the second it gets there. No app, no account, one email.

WHAT'S ON THIS PAGE

↓ Price chart
when this has been cheap or pricey
↓ Forecast
where the price is heading next
↓ Statistics
all-time high & low, recent range
↑ Price alert
name your number, we'll email you

Price History & Forecast

Grey patches = out of stock. Cheaper = lower on the chart. Hover for exact prices.

Last 90 days • 90 data points

Historical
Generating forecast...
£84.92 £81.70 £82.40 £83.10 £83.81 £84.51 £85.21 18 February 2026 12 March 2026 03 April 2026 25 April 2026 18 May 2026

Price Distribution

Price distribution over 90 days • 4 price levels

Days at Price
Current Price
18 days · current 45 days 14 days 13 days 0 11 23 34 45 £82 £83 £84 £85 Days at Price

Price Analysis

Most common price: £83 (45 days, 50.0%)

Price range: £82 - £85

Price levels: 4 different prices over 90 days

Description

Product Description This significantly extended second edition addresses the important physical phenomenon of Surface Plasmon Resonance (SPR) or Surface Plasmon Polaritons (SPP) in thin metal films, a phenomenon which is exploited in the design of a large variety of physico-chemical optical sensors. In this treatment, crucial materials aspects for design and optimization of SPR sensors are investigated and described in detail. The text covers a selection of nanometer thin metal films, ranging from free-electron to the platinum-type conductors, along with their combination with a large variety of dielectric substrate materials, and associated individual layer and opto-geometric arrangements. Whereas the first edition treated solely the metal-liquid interface, the SP-resonance conditions considered here are expanded to cover the metal-gas interface in the angular and wavelength interrogation modes, localized and long-range SP's and the influence of native oxidic ad-layers in the case of non-noble metals. Furthermore, a selection of metal grating structures that allow SP excitation is presented, as are features of radiative SP's.  Finally, this treatise includes as-yet hardly explored SPR features of selected metal–metal and metal–dielectric superlattices. An in-depth multilayer Fresnel evaluation provides the mathematical tool for this optical analysis, which otherwise relies solely on experimentally determined electro-optical materials parameters. From the Back Cover This significantly extended second edition addresses the important physical phenomenon of Surface Plasmon Resonance (SPR) or Surface Plasmon Polaritons (SPP) in thin metal films, a phenomenon which is exploited in the design of a large variety of physico-chemical optical sensors. In this treatment, crucial materials aspects for design and optimization of SPR sensors are investigated and described in detail. The text covers a selection of nanometer thin metal films, ranging from free-electron to the platinum-type conductors, along with their combination with a large variety of dielectric substrate materials, and associated individual layer and opto-geometric arrangements. Whereas the first edition treated solely the metal-liquid interface, the SP-resonance conditions considered here are expanded to cover the metal-gas interface in the angular and wavelength interrogation modes, localized and long-range SP's and the influence of native oxidic ad-layers in the case of non-noble metals. Furthermore, a selection of metal grating structures that allow SP excitation is presented, as are features of radiative SP's.  Finally, this treatise includes as-yet hardly explored SPR features of selected metal–metal and metal–dielectric superlattices. An in-depth multilayer Fresnel evaluation provides the mathematical tool for this optical analysis, which otherwise relies solely on experimentally determined electro-optical materials parameters. About the Author Leiva Casemiro Oliveira is a computer scientist, who received a Ph.D. in electrical engineering at UFCG-Brazil in 2016. He is an advanced researcher on SPR technology in Brazil. Antonio Marcus N. Lima is an electrical engineer, who received his doctoral degree from INPT-Toulouse in 1989. He is a renowned researcher in the field of electrical engineering in Brazil. Carsten Thistrup received his Ph.D. in 1991 at the Technical University of Denmark; he co-founded the company Vir Biosensor.   Helmut Neff was a physicist, who received his Ph.D. degree from TU-Berlin in 1981. He held positions at several researcher centers around the world.

Product Specifications

Barcode

No barcode data available

Similar Products You Might Like

Functional Thin Films and Nanostructures for Sensors: Synthesis, Physics and Applications (Integrated Analytical Systems)
85% match

Functional Thin Films and Nanostructures for Sensors: Synthesis, Physics and Applications (Integrated Analytical Systems)

Springer

£73.60 18 May 2026
Computational Photonic Sensors
84% match

Computational Photonic Sensors

Springer

£107.98 11 May 2026
Fiber Optic Sensors: Current Status and Future Possibilities: 21 (Smart Sensors, Measurement and Instrumentation, 21)
84% match

Fiber Optic Sensors: Current Status and Future Possibilities: 21 (Smart Sensors, Measurement and Instrumentation, 21)

Springer

£115.87 18 May 2026
Physics of Negative Refraction and Negative Index Materials: Optical and Electronic Aspects and Diversified Approaches: 98 (Springer Series in Materials Science, 98)
84% match

Physics of Negative Refraction and Negative Index Materials: Optical and Electronic Aspects and Diversified Approaches: 98 (Springer Series in Materials Science, 98)

Springer

£107.98 11 May 2026
Surface Plasmon Nanophotonics: 131 (Springer Series in Optical Sciences, 131)
83% match

Surface Plasmon Nanophotonics: 131 (Springer Series in Optical Sciences, 131)

Springer

£74.96 11 May 2026
New Directions in Thin Film Nanophotonics: 6 (Progress in Optical Science and Photonics, 6)
83% match

New Directions in Thin Film Nanophotonics: 6 (Progress in Optical Science and Photonics, 6)

Springer

£73.16 18 May 2026
Near-Field Optics and Surface Plasmon Polaritons: 81 (Topics in Applied Physics, 81)
83% match

Near-Field Optics and Surface Plasmon Polaritons: 81 (Topics in Applied Physics, 81)

Springer

£107.98 11 May 2026
Optics, Photonics and Laser Technology 2017: 222 (Springer Series in Optical Sciences, 222)
82% match

Optics, Photonics and Laser Technology 2017: 222 (Springer Series in Optical Sciences, 222)

Springer

£64.35 18 May 2026
Characterisation of Ferroelectric Bulk Materials and Thin Films: Solutions for Metrology: 2 (Springer Series in Measurement Science and Technology, 2)
82% match

Characterisation of Ferroelectric Bulk Materials and Thin Films: Solutions for Metrology: 2 (Springer Series in Measurement Science and Technology, 2)

Springer

£107.98 17 May 2026
Fundamental and Applied Nano-Electromagnetics II: THz Circuits, Materials, Devices: 2 (NATO Science for Peace and Security Series B: Physics and Biophysics)
82% match

Fundamental and Applied Nano-Electromagnetics II: THz Circuits, Materials, Devices: 2 (NATO Science for Peace and Security Series B: Physics and Biophysics)

Springer

£77.91 18 May 2026
Nonlinear Super-Resolution Nano-Optics and Applications: 191 (Springer Series in Optical Sciences, 191)
82% match

Nonlinear Super-Resolution Nano-Optics and Applications: 191 (Springer Series in Optical Sciences, 191)

Springer

£76.38 18 May 2026
Nonlinear Super-Resolution Nano-Optics and Applications: 191 (Springer Series in Optical Sciences, 191)
82% match

Nonlinear Super-Resolution Nano-Optics and Applications: 191 (Springer Series in Optical Sciences, 191)

Springer

£76.38 18 May 2026
Optical Fiber Sensors: Advanced Techniques and Applications (Devices, Circuits, and Systems)
81% match

Optical Fiber Sensors: Advanced Techniques and Applications (Devices, Circuits, and Systems)

CRC Press

£63.24 11 May 2026
Biosensors and Biodetection: Methods and Protocols Volume 1: Optical-Based Detectors: 1571 (Methods in Molecular Biology)
81% match

Biosensors and Biodetection: Methods and Protocols Volume 1: Optical-Based Detectors: 1571 (Methods in Molecular Biology)

Humana

£74.05 18 May 2026
Optical Sensors: Industrial Environmental and Diagnostic Applications: 1 (Springer Series on Chemical Sensors and Biosensors, 1)
81% match

Optical Sensors: Industrial Environmental and Diagnostic Applications: 1 (Springer Series on Chemical Sensors and Biosensors, 1)

Springer

£108.92 11 May 2026
Materials for Chemical Sensing
81% match

Materials for Chemical Sensing

Springer

£107.35 18 May 2026
Photoelectron Spectroscopy: Bulk and Surface Electronic Structures: 176 (Springer Series in Optical Sciences, 176)
81% match

Photoelectron Spectroscopy: Bulk and Surface Electronic Structures: 176 (Springer Series in Optical Sciences, 176)

Springer

£84.28 18 May 2026
Plasmonics for Hydrogen Energy (SpringerBriefs in Energy)
81% match

Plasmonics for Hydrogen Energy (SpringerBriefs in Energy)

Springer

£81.57 04 May 2026
Dual-Mode Electro-photonic Silicon Biosensors (Springer Theses)
81% match

Dual-Mode Electro-photonic Silicon Biosensors (Springer Theses)

Springer

£78.85 18 May 2026
Plasmonics and Super-Resolution Imaging
81% match

Plasmonics and Super-Resolution Imaging

Taylor & Francis

£159.00 11 May 2026
Electron and Phonon Spectrometrics
81% match

Electron and Phonon Spectrometrics

Springer

£104.67 04 May 2026
Piezoelectric Transducers and Applications
81% match

Piezoelectric Transducers and Applications

Springer

£123.66 11 May 2026
Magnetism in Topological Insulators
81% match

Magnetism in Topological Insulators

Springer

£61.80 18 May 2026
Topics in Theoretical and Computational Nanoscience: From Controlling Light at the Nanoscale to Calculating Quantum Effects with Classical Electrodynamics (Springer Theses)
81% match

Topics in Theoretical and Computational Nanoscience: From Controlling Light at the Nanoscale to Calculating Quantum Effects with Classical Electrodynamics (Springer Theses)

Springer

£76.38 18 May 2026