Nanobioelectrochemistry : from implantable biosensors to green power generation /

Nanobioelectrochemistry covers the modern aspects of bioelectrochemistry, nanoscience and materials science. The combination of nanostructured materials and biological molecules enables the development of biodevices capable to detect specific substances. Furthermore, by using the bioelectrochemistry...

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Bibliographic Details
Corporate Authors: SpringerLink (Online service)
Group Author: Crespilho, Frank N.
Published: Springer,
Publisher Address: Berlin ; New York :
Publication Dates: 2013.
Literature type: eBook
Language: English
Subjects:
Online Access: http://dx.doi.org/10.1007/978-3-642-29250-7
Summary: Nanobioelectrochemistry covers the modern aspects of bioelectrochemistry, nanoscience and materials science. The combination of nanostructured materials and biological molecules enables the development of biodevices capable to detect specific substances. Furthermore, by using the bioelectrochemistry approach, the interaction between bio-systems and nanostructured materials can be studied at the molecular level, where several mechanisms of molecular behavior are elucidate from redox reactions. The combination of biological molecules and novel nanomaterials components is of great importance in the process of developing new nanoscale devices for future biological, medical and electronic applications. This book describes some of the different electrochemical techniques that can be used to study new strategies for patterning electrode surfaces with enzymes, organelles, cells and biomimetic systems. Also, it focuses on how enzymes and microorganisms can be used as biological catalysts in fuel cells for green power generation. By bringing together these different aspects of nanobioelectrochemistry, this book provides a valuable source of information for many students and scientists.
Carrier Form: 1 online resource
Bibliography: Includes bibliographical references.
ISBN: 9783642292507 (electronic bk.)
364229250X (electronic bk.)
Index Number: QP517
CLC: Q591.8
Contents: Nanoscience-Based Electrochemical Sensors and Arrays for Detection of Cancer Biomarker Proteins /
Nanomaterials for Biosensors and Implantable Biodevices /
Nanomaterials for Enzyme Biofuel Cells /
Biosensors Based on Field-Effect Devices /
Using Supramolecular Chemistry Strategy for Mapping Electrochemical Phenomena on the Nanoscale /
DNA and Enzyme-Based Electrochemical Biosensors: Electrochemistry and AFM Surface Characterization /
Electrochemical-Surface Plasmon Resonance: Concept and Bioanalytical Applications /