Li-Ion Batteries Development and Perspectives.
Clasificación: | Libro Electrónico |
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Autor principal: | |
Otros Autores: | , , |
Formato: | Electrónico eBook |
Idioma: | Inglés |
Publicado: |
Les Ulis :
EDP Sciences,
2022.
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Colección: | Current Natural Sciences Series.
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Temas: | |
Acceso en línea: | Texto completo |
Tabla de Contenidos:
- Intro
- Li-ion Batteries
- Preface
- Contents
- Introduction
- Brief History of Primary and Secondary Batteries
- General Information on Li-ion Batteries
- Bibliography
- Positive Electrode Materials for "Lithium-ion" Accumulators
- Positive Electrode Materials of "Spinel" Structure
- Positive Electrode Materials with Lithiated Layered Oxide Structure
- Positive Electrode Materials with Olivine Structure
- References
- Negative Electrode Materials
- Negative Electrode Materials: Several Solutions
- Insertion-Intercalation
- Conversion
- Alloying
- Carbon
- Grafting on Inorganic or Organic Support
- Functionalization of Neutral Polymers
- Functionalization of Conducting Polymers
- Stabilization by Physisorption
- Polyanionic Salt Formation
- References
- Electrolytes and Separators
- Liquid Electrolytes
- Lithium Salts and Organic Solvents
- Basic Properties and General Observation
- State of the Art, Its Limitations and Research to Overcome Them
- Lithium Salts and Ionic Liquids
- Separators
- Properties of Separators
- The Separator Market
- Cost and Security
- Bibliography
- Na-ion Batteries: Should/Can Lithium be Replaced?
- General Aspects
- Should Lithium be Replaced?
- Lithium Resources
- Lithium Cost
- Can Lithium be Replaced? Towards a 100% Abundant Element-Based Battery
- The Na-ion Technology
- Brief History
- Operating Principle
- State of the Art
- Negative Electrode Materials
- Graphite
- Hard Carbon
- Non-Carbon Materials
- Positive Electrode Materials
- Layered Oxides
- Polyanionic Materials
- Electrolytes and Interfaces
- Full System Performance
- Outlook
- Low Cost Approach
- High Power Approach
- References
- Metal-Sulfur Batteries
- The Metal-Sulfur Cell
- Advantages and Comparison with Other Technologies
- Working Mechanism of the Metal-Sulfur Cell
- The (Li,Na)-ion Sulfur Cell
- Technology State of the Art and Performances
- Main Actors
- Understanding the Complex Mechanism
- Development Strategies
- All-Solid-State Metal-Sulfur Batteries
- Industrial Actors
- Perspectives and Applications
- Bibliography
- All Solid-State Batteries
- Introduction and Overview
- Main Families of Solid Ionic Conductors
- Polymeric Solid Electrolytes
- Inorganic Solid Electrolytes
- Oxides
- Oxyhalides with Anti-Perovskite Structure