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Titlebook: Electrochemical Supercapacitors; Scientific Fundament B. E. Conway Book 1999 Springer Science+Business Media New York 1999 Batterie.develop

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楼主: charter
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Energetics and Elements of the Kinetics of Electrode Processes,hnologists, as well as materials scientists, it has been considered desirable to include a brief chapter on the basic aspects of charge transfer at electrode interfaces, especially their energetics and kinetics. Some notes on the requirements for experimental measurements on capacitor and battery el
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Elements of Electrostatics Involved in Treatment of Double Layers and Ions at Capacitor Electrode Ic distributions of these species in high interphasial fields. At charged electrode interphases in double layers, the electric fields can become as high as 10. V cm., and similarly in the solvation shells of ions. The electrostatics of such interphases are concerned with:
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The Double Layer at Capacitor Electrode Interfaces: Its Structure and Capacitance,ed double layer at electrode interfaces and (2) another associated with the pseudocapacitance that is developed in certain kinds of electrode processes where the extents of charge passed . (up to some limit) are some function of potential (.) so that a derivative . arises that is electrically equiva
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Theoretical Treatment and Modeling of the Double Layer at Electrode Interfaces, broad account of the theoretical treatments of the structure and capacitance of the double layer at electrode interfaces. This topic has been one of major activity and interest in electrochemistry for about a hundred years, and has now found substantial technological applications. In 1997, the Elec
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Behavior of the Double Layer in Nonaqueous Electrolytes and Nonaqueous Electrolyte Capacitors,f nonaqueous solutions rather than aqueous ones are used as the electrolyte. The advantage is mainly that substantially higher Gibbs energy, ., and also in some circumstances better power densities, can be achieved because of the relation ...2.
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Electrochemical Capacitors Based on Pseudocapacitance,n redox reactions at electrode surfaces or oxide films, e.g., RuO., IrO., Co.O.. The significance of the term and phenomenon referred to as “pseudocapacitance” has not been well understood in the electrochemical capacitor and related battery fields. We therefore first explain its origin and signific
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