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dc Electrical Degradation of Perovskite‐Type Titanates: I, Ceramics

Journal of the American Ceramic Society · 1990 · Vol. 73(6) · pp. 1645–1653
Rainer WaserTudor BaiatuKarl‐Heinz Härdtl

Abstract

The rate of the resistance degradation of doped SrTiO 3 ceramics is investigated as a function of various external and material parameters. The effects of the mutually interrelated parameters dc voltage, dc electric field, and thickness of the dielectric are described by power laws. Electron microscopic potential contrast studies show a Maxwell‐Wagner polarization leading to a concentration of the electric field at the grain boundaries during the degradation. Based on this finding, the voltage step per grain boundary, ΔΘ gb , is introduced as a rate‐determining parameter which allows an explanation of the influence of the grain size on the degradation rate as well as the difference in the power laws for ceramic and single‐crystal samples.

Ferroelectric and Piezoelectric MaterialsElectronic and Structural Properties of OxidesMicrowave Dielectric Ceramics SynthesisCeramicGrain boundaryMaterials scienceElectric fieldDielectricDopingGrain sizeCondensed matter physicsDegradation (telecommunications)Polarization (electrochemistry)
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