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Abnormal dielectric relaxations and giant permittivity in SrTiO3 ceramic prepared by plasma activated sintering
Authors:Zichen He  Minghe Cao  Eugene Furman  Michael T Lanagan  Hua Hao  Zhonghua Yao  Zhiyong Yu  Hanxing Liu
Affiliation:1. State Key Laboratory of Advanced Technology of Materials Synthesis and Processing, Wuhan University of Technology, Wuhan, PR China

Materials Research Institute, Pennsylvania State University, University Park, Pennsylvania, USA;2. State Key Laboratory of Advanced Technology of Materials Synthesis and Processing, Wuhan University of Technology, Wuhan, PR China;3. Materials Research Institute, Pennsylvania State University, University Park, Pennsylvania, USA

Abstract:In this study, the dielectric properties of SrTiO3 ceramics prepared by plasma-activated sintering (PAS) were investigated. One of the striking findings is that the material exhibits giant room temperature permittivity (k~3.5 × 104) and low dielectric loss (~0.05) at 1 kHz, with the permittivity exceeding that of the conventionally prepared SrTiO3(ST) ceramics (k~300) by two orders of magnitude. The enhancement of the polarizability was caused by the high concentration of defect dipoles. In this paper, two dielectric relaxation modes of the PAS ceramics below 0°C have been mainly discussed. One dielectric relaxation mode showed higher activation energy than that of the dielectric peak in the same temperature range for the conventional SrTiO3-based ceramics. This mode was sensitive to humidity, and the strength of this mode was associated with the oxygen vacancies concentration in the ceramics. The other mode exhibited abnormal slowing down of relaxation rate with increasing temperature, which is contrary to the typical dielectric relaxation behavior, and the anomaly persisted over a narrow temperature range. Both modes were observed at the same interface between the grain and grain boundaries.
Keywords:defects  dielectric relaxation  permittivity  spark plasma sintering  strontium titanate
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