Graphite Intercalation Compounds II: Springer Series in Materials Science, cartea 18
Editat de Hartmut Zabel, Stuart A. Solinen Limba Engleză Paperback – 16 dec 2011
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Specificații
ISBN-13: 9783642844812
ISBN-10: 3642844812
Pagini: 452
Ilustrații: XIV, 433 p.
Dimensiuni: 155 x 235 x 25 mm
Greutate: 0.68 kg
Ediția:Softcover reprint of the original 1st ed. 1992
Editura: SPRINGER VIEWEG
Colecția Springer Series in Materials Science
Seria Springer Series in Materials Science
Locul publicării:Berlin, Heidelberg, Germany
ISBN-10: 3642844812
Pagini: 452
Ilustrații: XIV, 433 p.
Dimensiuni: 155 x 235 x 25 mm
Greutate: 0.68 kg
Ediția:Softcover reprint of the original 1st ed. 1992
Editura: SPRINGER VIEWEG
Colecția Springer Series in Materials Science
Seria Springer Series in Materials Science
Locul publicării:Berlin, Heidelberg, Germany
Public țintă
ResearchCuprins
1. Introduction.- References.- 2. Electronic Band Structure of Graphite Intercalation Compounds.- 2.1 Methods for Band Structure Calculations.- 2.2 Graphite.- 2.3 Electronic Band Structures of Low-Stage Graphite Intercalation Compounds.- 2.4 Electronic Band Structure of High-Stage Graphite Intercalation Compounds.- 2.5 Summary and Conclusions.- References.- 3. Electron Spectroscopy of Graphite Intercalation Compounds.- 3.1 Essential Concepts.- 3.2 The Situation in the Literature.- 3.3 Principal Results for the Electronic Structure.- 3.4 Photoemission from Acceptor GICs.- 3.5 Summary and Conclusions.- References.- 4. Effects of Charge Transfer on the Optical Properties of Graphite Intercalation Compounds.- 4.1 Experimental Considerations.- 4.2 Deducing Charge Transfer from Optical Studies.- 4.3 Experimental Results and Discussion.- 4.4 Summary and Conclusion.- References.- 5. Superconductivity of Graphite Intercalation Compounds.- 5.1 Superconductivity of C8M (M= K, Rb, Cs).- 5.2 Superconductivity of Binary Intercalants.- 5.3 Theoretical Aspects of the Origin of Superconductivity in GICs.- References.- 6. Transport Properties of Metal Chloride Acceptor Graphite Intercalation Compounds.- 6.1 The In-Plane Electrical Resistivity.- 6.2 The In-Plane Thermal Conductivity.- 6.3 The In-Plane Thermoelectric Power.- 6.4 c Axis Transport and Anisotropy.- 6.5 Transport in Magnetic GICs.- 6.6 Concluding Remarks.- References.- 7. Magnetic Intercalation Compounds of Graphite.- 7.1 Background.- 7.2 Origin of Magnetic Interactions.- 7.3 Experimental Techniques for Studying GICs.- 7.4 Overview of Magnetic GICs.- 7.5 Summary.- References.- 8. Intercalation of Graphite Fibers.- 8.1 Precursor Graphite Fibers.- 8.2 Intercalation.- 8.3 Structure and Staging.- 8.4 Raman Characterization.- 8.5 Transport Properties.- 8.6 Mechanical Properties.- 8.7 Thermal Expansion.- 8.8 Applications of Intercalated Carbon Fibers.- 8.9. Summary and Conclusions.- References.