Trends in Interfacial Electrochemistry [electronic resource] /

Components of the electrode Potential. Concepts and Problems. -- Potentials of Zero Charge. What they suggest about the structure of the interfacial region. -- Temperature Effects of Interfacial Properties. -- Electrochemistry on well-defined solid metal electrodes. -- Trends in Experimental Electrochemistry on sp and sd metal single crystal electrodes. -- Structure of the Double Layer and Rates of ion crossings at ‘single’ immiscible Liquid/Liquid (L/L) Interfaces. -- Electrical Double Layers at Interfaces between Colloidal Materials and Ionic Solutions. -- Phase Transitions in Adsorbed Layers. -- Surface Science Model Studies of the Electrochemical Interface. -- Solvent Effects upon Electrochemical kinetics: Influences of Interfacial Solvation and Solvent Relaxation Dynamics. -- UV-Visible Reflectance Spectroscopy in the Study of the Metal-Electrolyte Interface. -- Molecular Structure and Orientation in the Electrode//Electrolyte Solution Interface — In Situ IR Spectroscopy. -- Structure, Thermodynamics and Kinetics of Water at Interfaces. -- Models of the Electrical Double Layer: an Overview of the Present Situation. -- Monolayer Models of Metal-Water Interphases and their use in the Interpretation of Differential Capacity Curves and of Organic Adsorption. -- The Capacity of the Metal/Liquid Electrolyte Interphase: Contribution of the Metal. -- Recent developments in the theory of electrified interfaces. -- The semiconductor-electrolyte interface. -- List of Participants -- List of Contributors.

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Bibliographic Details
Main Authors: Silva, A. Fernando. editor., SpringerLink (Online service)
Format: Texto biblioteca
Language:eng
Published: Dordrecht : Springer Netherlands, 1986
Subjects:Chemistry., Physical chemistry., Physical Chemistry.,
Online Access:http://dx.doi.org/10.1007/978-94-009-4694-1
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Summary:Components of the electrode Potential. Concepts and Problems. -- Potentials of Zero Charge. What they suggest about the structure of the interfacial region. -- Temperature Effects of Interfacial Properties. -- Electrochemistry on well-defined solid metal electrodes. -- Trends in Experimental Electrochemistry on sp and sd metal single crystal electrodes. -- Structure of the Double Layer and Rates of ion crossings at ‘single’ immiscible Liquid/Liquid (L/L) Interfaces. -- Electrical Double Layers at Interfaces between Colloidal Materials and Ionic Solutions. -- Phase Transitions in Adsorbed Layers. -- Surface Science Model Studies of the Electrochemical Interface. -- Solvent Effects upon Electrochemical kinetics: Influences of Interfacial Solvation and Solvent Relaxation Dynamics. -- UV-Visible Reflectance Spectroscopy in the Study of the Metal-Electrolyte Interface. -- Molecular Structure and Orientation in the Electrode//Electrolyte Solution Interface — In Situ IR Spectroscopy. -- Structure, Thermodynamics and Kinetics of Water at Interfaces. -- Models of the Electrical Double Layer: an Overview of the Present Situation. -- Monolayer Models of Metal-Water Interphases and their use in the Interpretation of Differential Capacity Curves and of Organic Adsorption. -- The Capacity of the Metal/Liquid Electrolyte Interphase: Contribution of the Metal. -- Recent developments in the theory of electrified interfaces. -- The semiconductor-electrolyte interface. -- List of Participants -- List of Contributors.