Includes bibliographical references (pages 495-517) and index.
Part I: Background -- Complex variables -- Differential equations -- Statistics -- Electrical circuits -- Electrochemistry -- Electrochemical instrumentation -- Part II: Experimental considerations -- Experimental methods -- Experimental design -- Part III: Process models -- Equivalent circuit analogs -- Kinetic models -- Diffusion impedance -- Semiconducting systems -- Time-constant dispersion -- Generalized transfer functions -- Electrohydrodynamic impedance -- Part IV: Interpretation strategies -- Methods for representing impedance -- Preliminary graphical methods -- Model-based graphical methods -- Complex nonlinear regression -- Assessing regression quality -- Part V: Statistical analysis -- Error structure of impedance measurements -- The Kramers-Kronig relations -- Part VI: Overview -- An integrated approach to impedance spectroscopy -- Part VII: Reference material.
Using electrochemical impedance spectroscopy in a broad range of applications. This book provides the background and training suitable for application of impedance spectroscopy to varied applications, such as corrosion, biomedical devices, semiconductors.