The high-temperature electrical conductivity of single-crystal alumina
- 1 June 1963
- journal article
- Published by IOP Publishing in British Journal of Applied Physics
- Vol. 14 (6) , 335-339
- https://doi.org/10.1088/0508-3443/14/6/310
Abstract
The low voltage d.c. electrical conductivity of high purity annealed single-crystal alumina samples has been investigated between 800° C and 1500° C by a two-terminal method. An activation energy of 4.64 ev was obtained for the temperature range 1280° C to 1480° C. Material containing chromium as an impurity had a lower conductivity than the purer material and an activation energy of 4.26 ev. Effects likely to mask bulk-conductivity values have been examined in detail and the charge carriers identified as p-type. Crystal orientation and purity data are given. Bulk-conductivity values are ascribed to multi-valent impurity effects rather than to intrinsic behaviour as suggested by Pappis and Kingery; ionic conduction is shown to be negligible. The possibility of deriving the forbidden band-width from other data is examined.Keywords
This publication has 12 references indexed in Scilit:
- Aluminum Ion Diffusion in Aluminum OxideThe Journal of Chemical Physics, 1962
- Spin Resonance of Transition Metal Ions in CorundumJournal of Applied Physics, 1962
- Electrical Properties of Single‐Crystal and Polycrystalline Alumina at High TemperaturesJournal of the American Ceramic Society, 1961
- Transference Number Measurements for Aluminum OxideJournal of Applied Physics, 1961
- Annealing of the defects and colour centres in unirradiated and in reactor irradiated Al2O3Discussions of the Faraday Society, 1961
- Electrical Conductivity of Single Crystals of MgOThe Journal of Chemical Physics, 1959
- Initial Sintering of Alumina and HematiteJournal of the American Ceramic Society, 1958
- Photon Counters for the Far UltravioletReview of Scientific Instruments, 1955
- Absorption a haute température de quelques matériaux optiques dans l'ultraviolet de SchumannJournal de Physique et le Radium, 1952
- Electrical Conduction in Quartz, Periclase, and Corundum at Low Field StrengthJournal of Applied Physics, 1938