High pressure properties of graphite and its intercalation compounds
- 1 January 1984
- journal article
- research article
- Published by Taylor & Francis in Advances in Physics
- Vol. 33 (5) , 469-566
- https://doi.org/10.1080/00018738400101691
Abstract
The effects of applied pressure on graphite and its intercalation compounds are reviewed emphasizing the relationship between structure and transport properties. It has long been recognized that high pressure plays a crucial role in the polymorphic phase transitions of graphite, notably in the graphite-diamond transformation. More recent studies have revealed a wealth of pressure-induced phases associated with the unusual layer-stacking (‘staging’) mechanism in the intercalation compounds of graphite. The high degree of structural anisotropy associated with staging is strongly reflected in the electronic band structure and transport properties, and in the remarkable pressure dependence of the superconducting states of some of the graphite intercalation compounds. High pressure is shown to be a valuable means not only to realize new structural phases but also to improve our understanding of the fundamental behaviour of these important materials.Keywords
This publication has 212 references indexed in Scilit:
- Valence- and core-electronic excitations in potassium-intercalated graphitePhysical Review B, 1982
- The electrical conductivity of graphite-AsF5 intercalation compounds and their relationship to other graphite-MF6 saltsSynthetic Metals, 1981
- Theory of phonon-limited resistivity and electron-phonon interaction in higher-stage graphite intercalation compoundsSynthetic Metals, 1981
- Cooperative effects and staging n graphite intercalation compoundsSynthetic Metals, 1980
- X-ray and neutron diffraction from liquid alkali metalsActa Crystallographica Section A, 1979
- Production of Diamonds from Graphite Using Explosive-Driven ImplosionsAIAA Journal, 1976
- Effect of Pressure on the Fermi Surface of GraphitePhysical Review B, 1967
- Dimensionality of Superconductivity in Graphite Lamellar CompoundsPhysical Review B, 1967
- Theory of Metallic DiamondPhysical Review B, 1963
- IV. On the nature of the diamondPhilosophical Transactions of the Royal Society of London, 1797