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Chapter 1 - High Performance Lithium-Ion Batteries Using Fluorinated Compounds
Zonghai Chen, Zhengcheng Zhang and Khalil Amine
Pages 1-31 - Book chapterAbstract only
Chapter 2 - Electrochemical Behavior of Surface-Fluorinated Cathode Materials for Lithium Ion Battery
Susumu Yonezawa, Jae-Ho Kim and Masayuki Takashima
Pages 33-50 - Book chapterAbstract only
Chapter 3 - Fluoride Cathodes for Secondary Batteries
Munnangi Anji Reddy and Maximilian Fichtner
Pages 51-76 - Book chapterAbstract only
Chapter 4 - Fluorosulfates and Fluorophosphates As New Cathode Materials for Lithium Ion Battery
Christian M. Julien, Alain Mauger and Henri Groult
Pages 77-101 - Book chapterAbstract only
Chapter 5 - Fluorohydrogenate Ionic Liquids, Liquid Crystals, and Plastic Crystals
Kazuhiko Matsumoto and Rika Hagiwara
Pages 103-123 - Book chapterAbstract only
Chapter 6 - Novel Fluorinated Solvents and Additives for Lithium-Ion Batteries
T. Böttcher, N. Kalinovich, ... G.-V. Röschenthaler
Pages 125-145 - Book chapterAbstract only
Chapter 7 - Safety Improvement of Lithium Ion Battery by Organofluorine Compounds
Tsuyoshi Nakajima
Pages 147-172 - Book chapterAbstract only
Chapter 8 - Artificial SEI for Lithium-Ion Battery Anodes: Impact of Fluorinated and Nonfluorinated Additives
D. Lemordant, W. Zhang, ... B. Lestriez
Pages 173-202 - Book chapterAbstract only
Chapter 9 - Surface Modification of Carbon Anodes for Lithium Ion Batteries by Fluorine and Chlorine
Tsuyoshi Nakajima
Pages 203-223 - Book chapterAbstract only
Chapter 10 - Application of Polyvinylidene Fluoride Binders in Lithium-Ion Battery
Ramin Amin-Sanayei and Wensheng He
Pages 225-235 - Book chapterAbstract only
Chapter 11 - Electrodeposition of Polypyrrole on CFx Powders Used as Cathode in Primary Lithium Battery
Henri Groult, Christian M. Julien, ... Alain Mauger
Pages 237-260 - Book chapterAbstract only
Chapter 12 - New Nano-C–F Compounds for Nonrechargeable Lithium Batteries
K. Guérin and M. Dubois
Pages 261-287 - Book chapterAbstract only
Chapter 13 - Recent Advances on Quasianhydrous Fuel Cell Membranes
Benjamin Campagne, Ghislain David and Bruno Ameduri
Pages 289-323 - Book chapterAbstract only
Chapter 14 - The Use of Per-Fluorinated Sulfonic Acid (PFSA) Membrane as Electrolyte in Fuel Cells
Madeleine Odgaard
Pages 325-374 - Book chapterAbstract only
Chapter 15 - Surface-Fluorinated Carbon Materials for Supercapacitor
Young-Seak Lee
Pages 375-386 - Book chapterAbstract only
Chapter 16 - Fluorine Chemistry for Negative Electrode in Sodium and Lithium Ion Batteries
Mouad Dahbi and Shinichi Komaba
Pages 387-414 - Book chapterAbstract only
Chapter 17 - Application of Carbon Materials Derived from Fluorocarbons in an Electrochemical Capacitor
Soshi Shiraishi and Osamu Tanaike
Pages 415-430 - Book chapterNo access
Index
Pages 431-439
About the book
Description
Advanced Fluoride-Based Materials for Energy Conversion provides thorough and applied information on new fluorinated materials for chemical energy devices, exploring the electrochemical properties and behavior of fluorinated materials in lithium ion and sodium ion batteries, fluoropolymers in fuel cells, and fluorinated carbon in capacitors, while also exploring synthesis applications, and both safety and stability issues.
As electronic devices, from cell phones to hybrid and electric vehicles, are increasingly common and prevalent in modern lives and require dependable, stable chemical energy devices with high-level functions are becoming increasingly important. As research and development in this area progresses rapidly, fluorine compounds play a critical role in this rapid progression. Fluorine, with its small size and the highest electronegativity, yields stable compounds under various conditions for utilization as electrodes, electrolytes, and membranes in energy devices.
The book is an ideal reference for the chemist, researcher, technician, or academic, presenting valuable, current insights into the synthesis of fluorine compounds and fluorination reactions using fluorinating agents.
Advanced Fluoride-Based Materials for Energy Conversion provides thorough and applied information on new fluorinated materials for chemical energy devices, exploring the electrochemical properties and behavior of fluorinated materials in lithium ion and sodium ion batteries, fluoropolymers in fuel cells, and fluorinated carbon in capacitors, while also exploring synthesis applications, and both safety and stability issues.
As electronic devices, from cell phones to hybrid and electric vehicles, are increasingly common and prevalent in modern lives and require dependable, stable chemical energy devices with high-level functions are becoming increasingly important. As research and development in this area progresses rapidly, fluorine compounds play a critical role in this rapid progression. Fluorine, with its small size and the highest electronegativity, yields stable compounds under various conditions for utilization as electrodes, electrolytes, and membranes in energy devices.
The book is an ideal reference for the chemist, researcher, technician, or academic, presenting valuable, current insights into the synthesis of fluorine compounds and fluorination reactions using fluorinating agents.
Key Features
- Provides thorough and applied information on new fluorinated materials for chemical energy devices
- Describes the emerging role of stable energy devices with high-level functions and the research surrounding the technology
- Ideal for the chemist, research, technician, or academic seeking current insights into the synthesis of fluorine compounds and fluorination reactions using fluorinating agents
- Provides thorough and applied information on new fluorinated materials for chemical energy devices
- Describes the emerging role of stable energy devices with high-level functions and the research surrounding the technology
- Ideal for the chemist, research, technician, or academic seeking current insights into the synthesis of fluorine compounds and fluorination reactions using fluorinating agents
Details
ISBN
978-0-12-800679-5
Language
English
Published
2015
Copyright
Copyright © 2015 Elsevier Inc. All rights reserved.
Imprint
Elsevier