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Einband grossSuper Optical Biosensors
ISBN/GTIN

Super Optical Biosensors

E-BookEPUB0 - No protectionE-Book
150 Seiten
Englisch
Institute of Physics Publishingerschienen am16.05.2019
Surface plasmon resonance biosensors, ellipsometry biosensors, resonant mirror biosensors, and interferometry biosensors are optical instruments used to detect ligand-receptor interactions in biological research, clinical diagnoses and in the pharmaceutical industry. However, they are not sensitive enough for samples with molecular weight less than a few kilo-Daltons. The hybridization of surface plasmon resonance and ellipsometry makes it possible to build a super biosensor which can be used to detect samples with small molecules of less than a few hundred Daltons. The structure and operations of such hybrid biosensor increases the complexity and difficulty of operation, requiring a greater understanding of their workings in order to maximise their efficiency.

Commencing by defining a set of standards for benchmarking sensors to enable better comparison, this book then proceeds to provide a review of the physics and workings of several optical biosensors, and introduces two more super optical biosensors, including the most sensitive super optical biosensor 'RMEPA', an abbreviation of three optical technique names: resonant mirroring, ellipsometry and attenuated total reflection. Mathcad is used to analyse these biosensors and these codes are available to readers for use in their own research. It will be a key reference for researchers in academia and industry, particularly those involved in developing next generation optical biosensors.
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Verfügbare Formate
BuchGebunden
EUR160,50
E-BookEPUB0 - No protectionE-Book
EUR154,99

Produkt

KlappentextSurface plasmon resonance biosensors, ellipsometry biosensors, resonant mirror biosensors, and interferometry biosensors are optical instruments used to detect ligand-receptor interactions in biological research, clinical diagnoses and in the pharmaceutical industry. However, they are not sensitive enough for samples with molecular weight less than a few kilo-Daltons. The hybridization of surface plasmon resonance and ellipsometry makes it possible to build a super biosensor which can be used to detect samples with small molecules of less than a few hundred Daltons. The structure and operations of such hybrid biosensor increases the complexity and difficulty of operation, requiring a greater understanding of their workings in order to maximise their efficiency.

Commencing by defining a set of standards for benchmarking sensors to enable better comparison, this book then proceeds to provide a review of the physics and workings of several optical biosensors, and introduces two more super optical biosensors, including the most sensitive super optical biosensor 'RMEPA', an abbreviation of three optical technique names: resonant mirroring, ellipsometry and attenuated total reflection. Mathcad is used to analyse these biosensors and these codes are available to readers for use in their own research. It will be a key reference for researchers in academia and industry, particularly those involved in developing next generation optical biosensors.
Details
Weitere ISBN/GTIN9780750323840
ProduktartE-Book
EinbandartE-Book
FormatEPUB
Format Hinweis0 - No protection
FormatE101
Erscheinungsjahr2019
Erscheinungsdatum16.05.2019
Seiten150 Seiten
SpracheEnglisch
IllustrationenWith figures in colour and black and white
Artikel-Nr.4496678
Rubriken
Genre9200

Inhalt/Kritik

Inhaltsverzeichnis
Abstract

Preface

Acknowledgements

Author Biography

List of Symbols

1 A Sensitivity Benchmark for Optical Biosensors

2 Eigen-Waves in Optical Systems

3 Surface Plasmon Resonance Biosensors

4 SPR Ellipsometry Biosensors

5 Waveguide Biosensors

6 SPR Biosensors DIY And Applications
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Autor

Caide Xiao obtained his bachelor's degree in physics from Central China Normal University and was a lecturer of medical physics in Yunyang University. Following his PhD in optical biosensors from Tsinghua University he has subsequently been a research fellow and visiting scholar at the Biotechnology Research Institute in Montreal, Oakland University in Rochester, West Virginia University and the University of Calgary.