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Electrolytes for Lithium and Lithium-Ion Batteries

213,99 €*

ISBN-13:
9781493903023
Veröffentl:
2014
Seiten:
476
Autor:
T. Richard Jow
Serie:
58, Modern Aspects of Electrochemistry
eBook Typ:
PDF
eBook Format:
EPUB
Kopierschutz:
1 - PDF Watermark
Sprache:
Englisch
Beschreibung:
Electrolytes for Lithium and Lithium-ion Batteries provides a comprehensive overview of the scientific understanding and technological development of  electrolyte materials in the last several years. This book covers key electrolytes such as LiPF6 salt in mixed-carbonate solvents with additives for the state-of-the-art Li-ion batteries as well as new electrolyte materials developed recently that lay the foundation for future advances.  This book also reviews the characterization of electrolyte materials for their transport properties, structures, phase relationships, stabilities, and impurities. The book discusses in-depth the electrode-electrolyte interactions and interphasial chemistries that are key for the successful use of the electrolyte in practical devices. The Quantum Mechanical and Molecular Dynamical calculations that has proved to be so powerful in understanding and predicating behavior and properties of materials is also reviewed in this book. Electrolytes for Lithium and Lithium-ion Batteries is ideal for electrochemists, engineers, researchers interested in energy science and technology, material scientists, and physicists working on energy.
This book covers not only the key electrolytes for lithium and lithium-ion batteries, such as LiPF6 salt in mixed-carbonate solvents with additives, but also recently developed electrolyte materials that have the potential for future advances.
Nonaqueous Electrolytes with Advances in Salts.- Nonaqueous Electrolytes with Advances in Solvents.- Nonaqueous Electrolytes and Advances in Additives.-Ionic Liquids.- Interphases between Electrolytes and Anodes in Li-ion Battery.- On the Surface Chemistry of Cathode Materials in Li-ion Batteries.- Tools and Methodologies for Characterization of Electrode-Electrolyte Interfaces.- Molecular Modeling of Electrolytes.- Prediction of Electrolyte and Additive Electrochemical Stabilities.- Aprotic Electrolytes in Li-Air Batteries.

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