Here, the authors provide a unified concept for understanding multi-electron processes in electrochemical systems such as molten salts, ionic liquids, or ionic solutions. A major advantage of this concept is its independence of assumptions like one-step many-electron transfers or ‘discrete’ discharge of complex species. Therefore this monograph is a unique resource for basic electrochemical research but also for many important applications such as electrodeposition, electrorefining, or electrowinning of polyvalent metals from molten salts and other ionic media.
Here, the authors provide a unified concept for understanding multi-electron processes in electrochemical systems such as molten salts, ionic liquids, or ionic solutions. A major advantage of this concept is its independence of assumptions like one-step many-electron transfers or ‘discrete’ discharge of complex species. Therefore this monograph is a unique resource for basic electrochemical research but also for many important applications such as electrodeposition, electrorefining, or electrowinning of polyvalent metals from molten salts and other ionic media.
Fills a gap in the recent literature Provides a unified basis for understanding many-electron processes Written by experts
Aleksandr A. Andriiko
Electrochemical Kinetics Electrochemistry of Ionic Liquids Electrochemistry of Ionic Solutions Electrochemistry of Molten Salts Electrode Film Systems Electrodeposition Electrorefining Electrowinning of Polyvalent Metals Lithium Power Sources Many-electron Electrochemcal Systems