Impedance Spectroscopy is a powerful measurement method used in many application fields such as electro chemistry, material science, biology and medicine, semiconductor industry and sensors. Using the complex impedance at various frequencies increases the informational basis that can be gained during a measurement. It helps to separate different effects that contribute to a measurement and, together with advanced mathematical methods, non-accessible quantities can be calculated.
This book is the second in the series Lecture Notes on Impedance Spectroscopy (LNIS). The series covers new advances in the field of impedance spectroscopy including fundamentals, methods and applications. It releases scientific contributions as extended chapters including detailed information about recent scientific research results.
Modeling impedance spectroscopy data from lithium-ion battery aging utilizing particle swarm optimization;
Effects of soil properties on steel samples as studied with electro-chemical impedance measurements;
Magnetic field effect on hydrogen evolution activity of electrodeposited Ni-Mo coatings Scalable impedance spectroscopy: Comparative study of sinusoidal and rectangular chirp excitations;
;Harmonic controlled excitation in galvanostatic impedance spectroscopy;
Hardware concept and feature extraction for low-cost impedance spectroscopy for semiconductor gas sensors;
Current source considerations for broadband bioimpedance spectroscopy;
Handheld impedance measurement platform for preliminary analysis in biomedicine and technology;
Design and application of low cost system based on planar electromagnetic sensors and impedance spectroscopy for monitoring of nitrate contamination in natural water sources;
Impedance spectroscopy of novel interdigital sensors for endotoxin detection;
Characterisation of electromechanicalll³Û