New Fluorinated Carbons: Fundamentals and Applications: Progress in Fluorine Science Series: Progress in Fluorine Science
Editat de Olga V. Boltalina, Tsuyoshi Nakajima Alain Tressauden Limba Engleză Paperback – 15 sep 2016
Edited by recognized experts Olga Boltalina and Tsuyoshi Nakajima, this book includes valuable chapters on syntheses, structure analyses, and chemical and physical properties of fluorinated carbons written by leaders in each respective field. The work also explores the diverse practical applications of these functional materials—from energy storage and energy conversion devices to molecular electronics and lubricants.
- Features contributions by leading experts in the field
- Includes fundamental and current research on synthesis, chemical, and physical properties of fluorinated carbons
- Explores practical applications in energy, electronics, and lubricants
- Examines a range of new fluorinated carbon materials
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Specificații
ISBN-13: 9780128034798
ISBN-10: 0128034793
Pagini: 442
Dimensiuni: 152 x 229 x 30 mm
Greutate: 0.65 kg
Editura: ELSEVIER SCIENCE
Seria Progress in Fluorine Science
ISBN-10: 0128034793
Pagini: 442
Dimensiuni: 152 x 229 x 30 mm
Greutate: 0.65 kg
Editura: ELSEVIER SCIENCE
Seria Progress in Fluorine Science
Public țintă
Chemistry researchers in academia and industryCuprins
1. Electronic Properties and Applications of Fluorofullerenes
2. Synthesis and Isolation of Trifluoromethylfullerenes
3. Thirteen Decakis(trifluoromethyl)decahydro(C60-Ih)[5,6]fullerenes (C60(CF3)10): Structures and Structure-Related Properties of the Largest Set of Fullerene(X)n Isomers
4. Trifluoromethylated Corannulene Derivatives: Thermodynamic Stability and Electron-Accepting Properties
5. Fluorination–Defluorination and Fluorine Storage Properties of Single-Wall Carbon Nanotubes and Carbon Nanohorns
6. Synthesis and Characterization of Fluorinated Carbon Fibers and Nanotubes
7. Perfluoroalkylated PAH n-Type Semiconductors: Theory and Experiment
8. Electronic Structure of Fluorinated Graphene
9. Nature of C–F Bonds in Fluorinated Carbons
10. Preparation and Application of Fluorine–Carbon and Fluorine–Oxygen–Carbon Materials
11. Intercalation Chemistry and Application of B/C/N Materials to Secondary Batteries
12. Structures of Highly Fluorinated Compounds of Layered Carbon
13. Lithium–Graphite Fluoride Battery—History and Fundamentals
14. Fluorinated Nanocarbons for Lubrication
15. Perfluoropolyether-Functionalized Carbon-Based Materials and Their Applications
16. Nanoelectronics Based on Fluorinated Graphene
2. Synthesis and Isolation of Trifluoromethylfullerenes
3. Thirteen Decakis(trifluoromethyl)decahydro(C60-Ih)[5,6]fullerenes (C60(CF3)10): Structures and Structure-Related Properties of the Largest Set of Fullerene(X)n Isomers
4. Trifluoromethylated Corannulene Derivatives: Thermodynamic Stability and Electron-Accepting Properties
5. Fluorination–Defluorination and Fluorine Storage Properties of Single-Wall Carbon Nanotubes and Carbon Nanohorns
6. Synthesis and Characterization of Fluorinated Carbon Fibers and Nanotubes
7. Perfluoroalkylated PAH n-Type Semiconductors: Theory and Experiment
8. Electronic Structure of Fluorinated Graphene
9. Nature of C–F Bonds in Fluorinated Carbons
10. Preparation and Application of Fluorine–Carbon and Fluorine–Oxygen–Carbon Materials
11. Intercalation Chemistry and Application of B/C/N Materials to Secondary Batteries
12. Structures of Highly Fluorinated Compounds of Layered Carbon
13. Lithium–Graphite Fluoride Battery—History and Fundamentals
14. Fluorinated Nanocarbons for Lubrication
15. Perfluoropolyether-Functionalized Carbon-Based Materials and Their Applications
16. Nanoelectronics Based on Fluorinated Graphene