Nanobioelectrochemistry

From Implantable Biosensors to Green Power Generation

Nonfiction, Science & Nature, Technology, Nanotechnology, Science, Chemistry, Physical & Theoretical
Cover of the book Nanobioelectrochemistry by , Springer Berlin Heidelberg
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: ISBN: 9783642292507
Publisher: Springer Berlin Heidelberg Publication: August 1, 2012
Imprint: Springer Language: English
Author:
ISBN: 9783642292507
Publisher: Springer Berlin Heidelberg
Publication: August 1, 2012
Imprint: Springer
Language: English

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.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

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.

More books from Springer Berlin Heidelberg

Cover of the book Entscheidungstheorie by
Cover of the book Tutorium Elektrodynamik by
Cover of the book Nonlinear Differential Equations and Dynamical Systems by
Cover of the book The Environments of the Sun and the Stars by
Cover of the book Gesprächsführung in technischen Berufen by
Cover of the book Applied General Equilibrium by
Cover of the book Seltene Lungenerkrankungen by
Cover of the book Der Europäische Gerichtshof für Menschenrechte als Diskurswächter by
Cover of the book Managerial Discretion and Performance in China by
Cover of the book Fiber Optics by
Cover of the book Innovations and Advances in Wound Healing by
Cover of the book Cyber Attack Information System by
Cover of the book Radio Frequency Identification: Security and Privacy Issues by
Cover of the book Sustainable Supply Chain Management by
Cover of the book Tumor Specific Transplantation Antigen by
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy