Lithium-ion batteries enabled by silicon anodes
Deploying lithium-ion batteries depends on cost-effective materials with high energy and power density to facilitate lower weight. Si-based anode materials offer superior storage capacity. This reference presents current knowledge about the use of silicon and its derivates for Li-ion batteries.
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| Other Authors | , |
|---|---|
| Format | Electronic eBook |
| Language | English |
| Published |
Stevenage
Institution of Engineering and Technology
2021
|
| Series | IET energy engineering series ;
199. |
| Subjects | |
| Online Access | Full text |
| ISBN | 178561956X 9781785619564 9781785619557 1785619551 |
| Physical Description | 1 online resource (xix, 420 pages) illustrations |
Cover
Table of Contents:
- Chapter 1: Overview of the development of silicon anodes for lithium-ion batteries
- Chapter 2: Application of Zintl-Klemm rules to silicon-based LIB anodes
- Chapter 3: Electrochemistry of silicon
- Chapter 4: Electrolytes used in silicon anodes
- Chapter 5: Interfacial chemistry on silicon anode
- Chapter 6: Computational studies for understanding and developing silicon anodes
- Chapter 7: Nanostructure silicon for Li-ion batteries
- Chapter 8: Binder additive for silicon anodes
- Chapter 9: Surface modification for silicon anodes
- Chapter 10: Mechanical characterization of silicon-based electrodes
- Chapter 11: Practical implementation of silicon-based negative electrodes in lithium-ion full-cells
- challenges and solutions
- Chapter 12: A silicon future.