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Nonohmic Properties of Zinc Oxide Ceramics

Japanese Journal of Applied Physics · 1971 · Vol. 10(6) · pp. 736–736
Michio Matsuoka

Abstract

Nonohmic properties of ZnO ceramics with five additives of Bi 2 O 3 , CoO, MnO, Cr 2 O 3 , and Sb 2 O 3 are studied in relation to sintering temperature, additive content, and temperature dependence. The observation of electron photomicrographs and X-ray microanalysis proves a ceramic microstructure such that ZnO and these five oxides form, at the grain boundaries, segregation layers which are responsible for the nonohmic properties. The electrical resistivity and dielectric constant of segregation layers are estimated to be 10 13 ohm-cm, and 170, respectively by using a simple model. The electric field strength corresponding to the steep rise in the current is also estimated to be 10 4 V/cm by taking account of the concentration of applied voltage at the segregation layer. In view of these data and simple model, a possible explanation for nonohmic properties is discussed.

ZnO doping and propertiesGas Sensing Nanomaterials and SensorsTransition Metal Oxide NanomaterialsCeramicMaterials scienceMicrostructureElectrical resistivity and conductivityZincSinteringDielectricOxideOhmGrain boundary
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