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Banks C., McIntosh S. (eds.) Electrochemistry

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Banks C., McIntosh S. (eds.) Electrochemistry
Cambridge: Royal Society of Chemistry, 2017. — 268 p.
Providing the reader with an up to date digest of the most important research currently carried out in the field, Electrochemistry Volume 14 is compiled and written by leading experts from across the globe. Coverage includes chapters on the use of metal organic frameworks as a precursor for electrocatalytic centre supports to enhance the oxygen reduction process in low temperature fuel cell systems, electrocatalysis for ethanol electrooxidation in alkaline media, and new polymer electrolyte and electrocatalysts for direct alcohol fuel cells. This volume is a key reference for researchers providing a timely overview of this exciting and developing area
Author biographies
Borohydride electro-oxidation on metal electrodes: structure, composition and solvent effects from DFT
Pure metal surfaces
Metal alloy surfaces
Pure metal surfaces --
solvated
Metal alloy surfaces --
solvated
Metal nanoparticles
Recent progress in the development of anion exchange membranes for electrochemical devices
Types of polymer backbones
Types of cations and their alkaline stability
Degradation mechanisms
AEM characterization methods
Anion exchange membrane fuel cells: performance and durability
Other applications
Summary and concluding remarks
Anodic materials for electrooxidation of alcohols in alkaline media
Mechanisms of alcohol oxidation reactions in alkaline media
Anode materials for DAFCs
Newer polymer electrolytes and electrocatalysts for direct alcohol fuel cells
Proton conducting polymer electrolytes for DAFCs
Anion exchange membranes for alkaline DMFC
Application of Metal Organic Framework (MOF) in the electrocatalytic process1 Introduction
The Metal Organic Framework in catalysis
Outlook and summary
Index of ligands
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