Résumé
The following sections are included:
List of Abbreviations
Introduction
Passivation Phenomena Related to Calcium, Magnesium, and Aluminum
First Calcium and Magnesium Batteries - SOCl2-Based Electrolytes
Nonaqueous Electrochemistry of Magnesium - Grignard-Type Solutions
First Attempt to Explore Rechargeable Magnesium Batteries
First Prototypes of Rechargeable Mg Batteries
Development of New Families of Electrolyte Solutions for Rechargeable Mg Batteries During Recent Years
Interfacial Aspects Related to Nonaqueous Mg Batteries - The Challenge
Electro-Active Species in Nonaqueous Mg Cells
Mg Nucleation and Growth Models
Origin of the Absence of Mg Dendrites
R&D for New Cathode Materials for Rechargeable Mg Batteries
Introduction
V2O5 and MnO2 Oxides and the Special Role of Crystal Water
Polyanionic Compounds
Sulfur-Based Cathodes
Organic Cathodes
Hybrid Systems as an Alternative?
Conclusion
Calcium Secondary Batteries: First Initiatives
Theoretical Insights into the Reactivity of Anode and Cathode Materials with Ca2+
Experimental Evaluation of Cathode and Anode Materials for Secondary Ca-Ion Cells
First Demonstration of Ca Plating, a First Step toward Ca Metal-Based Batteries
Nonaqueous Al Electrochemistry and Attempts to Develop Rechargeable Al Batteries
Introduction
Electrolyte Solutions for Al Batteries
From Molten Salts to Room-Temperature Ionic Liquids
Cathode Materials
Chevrel Phase Mo6S8
Titanium and Vanadium Binary Oxides
Graphite-Based Cathodes
PB Analogs
Conductive Polymers
Conclusion
Potential Importance of Aluminum-air Batteries
Introduction
Electrolyte Solutions and Electrochemical Mechanisms
Alkali Electrolytes
Neutral Saline and Other Types of Electrolytes
Alloying for Active Aluminum
Improvements through Electrolyte Additives
Ions of Alloying Elements in Alkali Electrolytes
Organic Inhibitors and Cationic Surfactants
Cathodes Materials
Conclusion
References