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Impedance Spectroscopy: Theory, Experiment, and Applications
 
 
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Impedance Spectroscopy: Theory, Experiment, and Applications [Hardcover]

Evgenij Barsoukov (Editor), J. Ross Macdonald (Editor)

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Book Description

0471647497 978-0471647492 March 17, 2005 2
A skillful balance of theoretical considerations and practical know-how
Backed by a team of expert contributors, the Second Edition of this highly acclaimed publication brings a solid understanding of impedance spectroscopy to students, researchers, and engineers in physical chemistry, electrochemistry, and physics. Starting with general principles, the book moves on to explain in detail practical applications for the characterization of materials in electrochemistry, semiconductors, solid electrolytes, corrosion, solid-state devices, and electrochemical power sources. The book covers all of the topics needed to help readers identify whether impedance spectroscopy may be an appropriate method for their particular research problem.
The book helps readers quickly grasp how to apply their new knowledge of impedance spectroscopy methods to their own research problems through the use of unique features such as:
* Step-by-step instructions for setting up experiments and then analyzing the results
* Theoretical considerations for dealing with modeling, equivalent circuits, and equations in the complex domain
* Best measurement methods for particular systems and alerts to potential sources of errors
* Equations for the most widely used impedance models
* Figures depicting impedance spectra of typical materials and devices
* Extensive references to the scientific literature for more information on particular topics and current research
This Second Edition incorporates the results of the last two decades of research on the theories and applications of impedance spectroscopy. Most notably, it includes new chapters on batteries, supercapacitors, fuel cells, and photochromic materials. A new chapter on commercially available measurement systems reflects the emergence of impedance spectroscopy as a mainstream research tool.
With its balanced focus on both theory and practical problem solving, Impedance Spectroscopy: Theory, Experiment, and Applications, Second Edition serves as an excellent graduate-level textbook as well as a hands-on guide and reference for researchers and engineers.

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Editorial Reviews

Review

"...the only text currently available...that extensively treats...both the theoretical considerations and the practical applications...an essential addition to the personal library of any scientist wishing an in-depth understanding…" (CORROSION, June 2006)

"This book would serve researchers and engineers working in this field. It could also be used effectively as a graduate text." (Materials and Manufacturing Processes, May 2006)

".. an excellent introduction to the theory of impedance spectroscopy, followed by detailed applications of the technique as well as experimental methods." (CHOICE, September 2005)

"This book should be consulted, if not owned, by any present and future practitioners in the field." (Journal of the American Chemical Society, September 7, 2005)

From the Back Cover

A skillful balance of theoretical considerations and practical know-how

Backed by a team of expert contributors, the Second Edition of this highly acclaimed publication brings a solid understanding of impedance spectroscopy to students, researchers, and engineers in physical chemistry, electrochemistry, and physics. Starting with general principles, the book moves on to explain in detail practical applications for the characterization of materials in electrochemistry, semiconductors, solid electrolytes, corrosion, solid-state devices, and electrochemical power sources. The book covers all of the topics needed to help readers identify whether impedance spectroscopy may be an appropriate method for their particular research problem.

The book helps readers quickly grasp how to apply their new knowledge of impedance spectroscopy methods to their own research problems through the use of unique features such as:

  • Step-by-step instructions for setting up experiments and then analyzing the results
  • Theoretical considerations for dealing with modeling, equivalent circuits, and equations in the complex domain
  • Best measurement methods for particular systems and alerts to potential sources of errors
  • Equations for the most widely used impedance models
  • Figures depicting impedance spectra of typical materials and devices
  • Extensive references to the scientific literature for more information on particular topics and current research

This Second Edition incorporates the results of the last two decades of research on the theories and applications of impedance spectroscopy. Most notably, it includes new chapters on batteries, supercapacitors, fuel cells, and photochromic materials. A new chapter on commercially available measurement systems reflects the emergence of impedance spectroscopy as a mainstream research tool.

With its balanced focus on both theory and practical problem solving, Impedance Spectroscopy: Theory, Experiment, and Applications, Second Edition serves as an excellent graduate-level textbook as well as a hands-on guide and reference for researchers and engineers.


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Inside This Book (learn more)
First Sentence:
Since the end of World War II we have witnessed the development of solid state batteries as rechargeable high-power-density energy storage devices, a revolution in high-temperature electrochemical sensors in environmental, industrial, and energy efficiency control, and the introduction of fuel cells to avoid the Carnot inefficiency inherent in noncatalytic energy conversion. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
plane impedance diagrams, current measurement input, measured impedance spectra, brick layer model, capacitative behavior, transient current measurements, typical impedance spectra, experimental impedance data, grain boundary arc, electrochemical impedance data, electrochemical impedance spectra, faradic admittance, point defect model, dielectric constant level, faradic impedance, anode impedance, capacitance dispersion, relaxation impedance, universal dielectric response, modulus spectra, brush electrode, faradaic resistance, complex nonlinear least squares, high impedance materials, hydrogen oxidation reaction
Key Phrases - Capitalized Phrases (CAPs): (learn more)
Stromme Mattsson, Pergamon Journals Ltd, Ross Macdonald, Solid State Ionics, Determination of the Reaction Model, High Temperature Aqueous Systems, John Wiley, Second Edition, Analysis of Electrochemical Impedance Data, Application of Kramers-Kronig Transforms, Couple Czn, Courtesy of Silicates Industriels
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