Electronic Properties of Graphite Intercalation Compounds
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[1] A. Heeger,et al. Nuclear magnetic resonance and static magnetic susceptibility of AsF5 - intercalated graphite☆ , 1978 .
[2] C. Zeller,et al. The effect of extrinsic defects in pyrolytic graphite on the a-axis resistivity , 1978 .
[3] U. Mizutani,et al. Low-temperature specific heats of graphite intercalation compounds with potassium and cesium , 1978 .
[4] A. Heeger,et al. Conduction electron spin resonance in acceptor-type graphite intercalation compounds☆ , 1978 .
[5] T. E. Thompson,et al. Direct synthesis of stage 1-3 intercalation compounds of arsenic pentafluoride in graphite , 1978 .
[6] I. Spain,et al. The electronic properties of lamellar compounds of graphite — An introduction , 1977 .
[7] J. Fischer,et al. Optical reflectance of graphite intercalated with group V pentafluorides , 1977 .
[8] P. Delhaès. Physical properties of graphite lamellar compounds with alkali metals and halogens , 1977 .
[9] J. Fischer,et al. Polarized reflectance of alkali metal—graphite intercalation compounds , 1977 .
[10] M. Dresselhaus,et al. Intercalate ionization in graphite—halogen compounds☆ , 1977 .
[11] J. Fischer,et al. Neutron scattering studies of alkali metal-graphite intercalation compounds , 1977 .
[12] J. Fischer,et al. Resistivity anomalies and phase transitions in alkali-metal graphite intercalation compounds , 1977 .
[13] C. Zeller,et al. Measurement of electrical conductivity under conditions of high anisotropy in graphite intercalation compounds , 1977 .
[14] N. Holzwarth,et al. Energy band structure of lithium—graphite intercalation compound , 1977 .
[15] C. Zeller,et al. High electrical conductivity in graphite intercalated with acid fluorides , 1977 .
[16] J. Fischer,et al. Metallic reflectance of AsF5-graphite intercalation compounds , 1977 .
[17] C. Zeller,et al. Room temperature electrical conductivity of a highly two dimensional synthetic metal: AsF5-graphite☆ , 1977 .
[18] T. Inoshita,et al. Electronic Structure of Potassium-Graphite Intercalation Compound: C8K , 1977 .
[19] F. L. Vogel,et al. The electrical conductivity of graphite intercalated with superacid fluorides: experiments with antimony pentafluoride , 1977 .
[20] P. M. Williams. The direct evaluation of electronic band structures of layered solids using angle-resolved photoemission , 1977 .
[21] E. Mooser,et al. Fine-structure splitting of the ground-state excitons in layer materials with stacking faults , 1977 .
[22] J. Fischer,et al. Electronic structure of donor-type graphite intercalation compounds , 1977 .
[23] M. Dresselhaus,et al. Graphite intercalation compounds: Electronic properties in the dilute limit , 1977 .
[24] M. Dresselhaus,et al. Far-infrared magnetoreflection studies of graphite intercalated with bromine , 1977 .
[25] T. E. Thompson,et al. Optical and Electrical Properties of Graphite Intercalated withHNO3 , 1976 .
[26] L. B. Ebert. Intercalation Compounds of Graphite , 1976 .
[27] L. Girifalco,et al. Preparation and properties of a barium-graphite compound , 1976 .
[28] F. Vogel. Materials for Electrical Transmission , 1976 .
[29] D. Guérard,et al. Paramagnetism and specific heat of the graphite lamellar compound C6Li , 1976 .
[30] D. Guérard,et al. Intercalation of lithium into graphite and other carbons , 1975 .
[31] R. Greene,et al. Superconductivity in Polysulfur Nitride ( SN ) X , 1975 .
[32] J. Wilson,et al. Charge-density waves and superlattices in the metallic layered transition metal dichalcogenides , 1975 .
[33] A. Heeger,et al. Electrical conductivity of tetrathiofulvalinium tetracyanoquinodimethan (TTF) (TCNQ) , 1974 .
[34] L. B. Ebert,et al. The nature of the chromium trioxide intercalation in graphite , 1974 .
[35] R. F. Willis,et al. Secondary-electron emission spectroscopy and the observation of high-energy excited states in graphite: Theory and experiment , 1974 .
[36] G. Guizzetti,et al. Optical Investigation ofπBands in Graphite , 1973 .
[37] W. Ruland,et al. Interstitial compounds of potassium with carbon fibers , 1972 .
[38] A. Ubbelohde. Electrical anisotropy of synthetic metals based on graphite , 1972, Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences.
[39] H. C. Montgomery. Method for Measuring Electrical Resistivity of Anisotropic Materials , 1971 .
[40] A. Ubbelohde. Electronic anomalies in dilute synthetic metals , 1971, Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences.
[41] G. P. Carver,et al. Nuclear Magnetic Resonance in the Cesium-Graphite Intercalation Compounds , 1970 .
[42] E. Tosatti,et al. Anisotropy of the Optical Constants and the Band Structure of Graphite , 1970 .
[43] G. Parry,et al. LETTERS TO THE EDITOR: Order-disorder transformations in rubidium and caesium graphites , 1969 .
[44] A. Ubbelohde,et al. Electronic properties of some synthetic metals derived from graphite , 1969, Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences.
[45] A. Ubbelohde. Charge transfer effects in acid salts of graphite , 1969, Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences.
[46] A. Ubbelohde. Electrical properties and phase transformations of graphite nitrates , 1968, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[47] W. L. Mcmillan. TRANSITION TEMPERATURE OF STRONG-COUPLED SUPERCONDUCTORS. , 1968 .
[48] G. Parry,et al. Formation and structure of the potassium graphites , 1968 .
[49] G. Parry,et al. Order–Disorder Transformation in Potassium Graphite , 1967, Nature.
[50] M. Strongin,et al. Dimensionality of Superconductivity in Graphite Lamellar Compounds , 1967 .
[51] A. Ubbelohde,et al. Order-disorder transformations in graphite nitrates , 1966, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[52] G. Hennig. Optical Transmission of Graphite Compounds , 1965 .
[53] H. Philipp,et al. Optical Properties of Graphite , 1965 .
[54] K. Andres,et al. Superconductivity in Graphitic Compounds , 1965 .
[55] D. Young,et al. Stress recrystallization of pyrolytic graphite , 1964, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[56] R. Kleiner,et al. Conduction carrier spin resonance in the alkalimetal-graphites C8Me and C24Me , 1962 .
[57] Stuart A. Rice,et al. Graphite and Its Crystal Compounds , 1961 .
[58] A. Ubbelohde,et al. Electrical properties of crystal compounds of graphite - III. The role of electron donors , 1960, Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences.
[59] J. Slonczewski,et al. Band Structure of Graphite , 1958 .
[60] J. W. McClure,et al. Band Structure of Graphite and de Haas-van Alphen Effect , 1957 .
[61] G. Hennig. THE PROPERTIES OF THE INTERSTITIAL COMPOUNDS OF GRAPHITE II. THE STRUCTURE AND STABILITY OF GRAPHITE RESIDUE COMPOUNDS , 1952 .
[62] P. Wallace. The Band Theory of Graphite , 1947 .
[63] T. E. Thompson,et al. The electrical conductivity and optical reflectance of graphite-SbF5 compounds , 1977 .
[64] F. L. Vogel. Changes in electrical resistivity and mechanical properties of graphite fibers after nitration , 1976 .
[65] G. S. Painter,et al. Electronic band structure and optical properties of graphite from a variational approach , 1970 .
[66] L. Stil’bans,et al. Semiconducting Lead Chalcogenides , 1970 .
[67] Yoichi Takahashi,et al. Electrical Conductivity of Graphite Bromine Lamellar Compounds , 1970 .
[68] F. Salzano,et al. Experimental Observations in the Potassium—Graphite System , 1967 .
[69] W. Rüdorff. Graphite Intercalation Compounds , 1959 .
[70] R. C. Pink,et al. 39. Some physical properties associated with “aromatic” electrons. Part III. The pseudo-metallic properties of potassium–graphite and graphite–bromine , 1951 .