
- English
- ePUB (mobile friendly)
- Available on iOS & Android
About this book
An essential resource with coverage of up-to-date research on sodium-ion battery technology
Lithium-ion batteries form the heart of many of the stored energy devices used by people all across the world. However, global lithium reserves are dwindling, and a new technology is needed to ensure a shortfall in supply does not result in disruptions to our ability to manufacture reliable, efficient batteries.
In Sodium-Ion Batteries: Energy Storage Materials and Technologies, eminent researcher and materials scientist Yan Yu delivers a comprehensive overview of the state-of-the-art in sodium-ion batteries (SIBs), including their design principles, cathode and anode materials, electrolytes, and binders. The author discusses high-performance rechargeable sodium-ion battery technology in the contexts of energy, power density, and electrochemical stability for commercialization.
Exploring a wide range of literature on the recent progress made by researchers on sodium-ion battery technology, the book provides valuable perspectives on designing better materials for SIBs to unlock their practical capabilities.
- A thorough introduction to sodium-ion batteries, including their key materials and likely future developments
- Comprehensive explorations of design principles of electrode materials and electrolytes for sodium-ion batteries
- Practical discussions of cathode materials for sodium-ion batteries, including transition metal oxides, polyanionic compounds, Prussian blue analogues and organic compounds
- In-depth examinations of anode materials for sodium-ion batteries, including carbon-based materials, metal chalcogenides, metal alloys, phosphorus and Na metal anodes
Perfect for materials scientists, inorganic chemists, electrochemists, and physical chemists, Sodium-Ion Batteries: Energy Storage Materials and Technologies will also earn a place in the libraries of catalytic and polymer chemists.
Frequently asked questions
- Essential is ideal for learners and professionals who enjoy exploring a wide range of subjects. Access the Essential Library with 800,000+ trusted titles and best-sellers across business, personal growth, and the humanities. Includes unlimited reading time and Standard Read Aloud voice.
- Complete: Perfect for advanced learners and researchers needing full, unrestricted access. Unlock 1.4M+ books across hundreds of subjects, including academic and specialized titles. The Complete Plan also includes advanced features like Premium Read Aloud and Research Assistant.
Please note we cannot support devices running on iOS 13 and Android 7 or earlier. Learn more about using the app.
Information
Table of contents
- Cover
- Table of Contents
- Title Page
- Copyright
- Foreword
- Preface
- 1 Introduction to SodiumâIon Batteries
- 2 Design Principles for SodiumâIon Batteries
- 3 Transition Metal Oxide Cathodes for SodiumâIon Batteries
- 4 PolyanionâType Cathodes for SodiumâIon Batteries
- 5 Prussian Blue Analogue Cathodes for SodiumâIon Batteries
- 6 Organic Cathodes for SodiumâIon Batteries
- 7 IntercalationâType Anode Materials for SodiumâIon Batteries
- 8 Phosphorus/Phosphide Anodes for SodiumâIon Batteries on Alloy and Conversion Reactions
- 9 Metal Oxides/Chalcogenides/Alloys for SodiumâIon Batteries on Alloy and Conversion Reactions
- 10 Effective Strategies to Restrain Dendrite Growth of Na Metal Anodes
- 11 Organic Liquid Electrolytes for SodiumâIon Batteries
- 12 Ionic Liquid Electrolytes for SodiumâIon Batteries
- 13 SolidâState and Gel Electrolytes for SodiumâIon Batteries
- 14 Binders for SodiumâIon Batteries
- 15 SodiumâIon Full Batteries
- 16 Perspectives for SodiumâIon Batteries
- Index
- End User License Agreement