Advanced Inorganic Fluorides: Synthesis, Characterization and Applications: Synthesis, Characterization and Applications
Nakajima, T.; Žemva, B.; Tressaud, A.
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Table of contents
- Advanced Inorganic Fluorides: Synthesis, Characterization and Applicationsiii
- Copyright Pageiv
- Table of Contentsvii
- Chapter 1. Introductive Remarks1
- Chapter 2. Recent Developments in the Synthesis of Inorganic Fluorides5
- Chapter 3. Low Valent Transition Metal Fluorides51
- Chapter 4. High Oxidation State Transition Metal Fluorides79
- Chapter 5. Syntheses and Structures of the Oxide Fluorides of the Main-Group and Transition Metal El117
- Chapter 6. Oxide Fluorides of Rare Earth Elements175
- Chapter 7. Oxyfluorinated Open Frameworks209
- Chapter 8. Optical Properties and Applications of Fluoride Glasses235
- Chapter 9. Magnetic Properties of Usovite and Jarlite Derivative Compounds283
- Chapter 10. Luminescent Properties of Fluorides315
- Chapter 11. Superacidic Reaction Media329
- Chapter 12. Fluoride Catalysts: Their Application to Heterogeneous Catalytic Fluorination and Relate367
- Chapter 13. Chemistry in Perfluorinated Organic Solvents403
- Chapter 14. Surface Modification of Inorganic Materials by Fluorination Treatments437
- Chapter 15. Fluorinated Carbon Materials for Energy Conversion493
- Chapter 16. Fluorine Compounds in Battery Applications521
- Chapter 17. Fluorinated Fullerenes555
- Chapter 18. Fluorinated Pitch591
- Chapter 19. Applications of Fluorides to Semiconductor Industries625
- Chapter 20. Industrial Applications of Inorganic Fluorides661
- Vendor Elsevier S & T
- SKU 9780444720023
- ISBN-13 9780080525488
- Author Nakajima, T.; Žemva, B.; Tressaud, A.
- Category Science
- Subject Inorganic
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This book summarizes recent progresses in inorganic fluorine chemistry. Highlights include new aspects of inorganic fluorine chemistry, such as new synthetic methods, structures of new fluorides and oxide fluorides, their physical and chemical properties, fluoride catalysts, surface modifications of inorganic materials by fluorination process, new energy conversion materials and industrial applications.
Fluorine has quite unique properties (highest electronegativity; very small polarizability). In fact, fluorine is so reactive that it forms fluorides with all elements except with the lightest noble gases helium, neon and argon. Originally, due to its high reactivity, fluoride chemistry faced many technical difficulties and remained undeveloped for many years. Now, however, a large number of fluorine-containing materials are currently produced for practical uses on an industrial scale and their applications are rapidly extending to many fields.
Syntheses and structure analyses of thermodynamically unstable high-oxidation-state fluorides have greatly contributed to inorganic chemistry in this decade. Fluoride catalysts and surface modifications using fluorine are developing a new field of fluorine chemistry and will enable new syntheses of various compounds. The research on inorganic fluorides is now contributing to many chemical energy conversion processes such as lithium batteries. Furthermore, new theoretical approaches to determining the electronic structures of fluorine compounds are also progressing. On the industrial front, the use of inorganic fluorine compounds is constantly increasing, for example, in semi-conductor industry.
"Advanced Inorganic Fluorides: Synthesis, Characterization and Applications" focuses on these new features in inorganic fluorine chemistry and its industrial applications. The authors are outstanding experts in their fields, and the contents of the book should prove to be of valuable assistance to all chemists, graduates, students and researchers in the field of fluorine chemistry.
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