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Titlebook: Electrochemical Impedance Spectroscopy and its Applications; Andrzej Lasia Textbook 2014 Springer Science+Business Media, LLC, part of Spr

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Self-Assembled Monolayers, Biological Membranes, and Biosensors,Adsorbed organic layers on surfaces are models for biological bilayers, lipid membranes, and biosensors. EIS is an important tool in the study of these materials. In this chapter, the study of self-assembled monolayers, bilayers, and biosensors will be presented.
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Definition of Impedance and Impedance of Electrical Circuits,e, then in transient conditions. Such circuits contain simple linear electrical elements: resistance, capacitance, and inductance. Then the concept of electrical impedance will be introduced. It demands an understanding of the Laplace and Fourier transforms, which will also be presented. To understa
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Impedance of the Faradaic Reactions in the Presence of Mass Transfer,pendent of the ac amplitude used. However, in electrochemical systems, we do not have such elements; we have solution–electrode interfaces, redox species, adsorption, etc. In this and the following chapters, we will learn how to express the electrochemical interfaces and reactions in terms of equati
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Electrocatalytic Reactions Involving Hydrogen,ine, and oxygen evolution, oxygen reduction, and methanol or ethanol oxidation in fuel cells. Many different electrochemical techniques were used to study these reactions, and EIS is one of them, providing interesting kinetic and surface information. Certain model reactions will be presented in what
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Dispersion of Impedances at Solid Electrodes,ver, most impedance studies are now carried out at solid electrodes. At these electrodes the double-layer capacitance is not purely capacitive and often displays a certain frequency dispersion. Such behavior cannot be modeled by a simple circuit consisting of R, L, and C elements. To explain such be
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