Journal of Inorganic Materials

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Dielectric Properties of Ba0.5Sr0.5TiO3 Ceramics Sintered by Pulse Electric Current Sintering

SHEN Cai; LIU Qing-Feng; LIU Qian   

  1. State Key Lab of High Performance Ceramics and Superfine Microstructure; Shanghai Institute of Ceramics; Chinese Academy of Sciences; Shanghai 200050; China
  • Received:2003-11-14 Revised:2003-12-25 Published:2004-11-20 Online:2004-11-20

Abstract: Cu2+, La3+ and (Cu2+, La3+ ) co-doped BST ceramics were fabricated from the powder prepared by using barium nitrate, strontium nitrate, copper nitrate, lanthanum nitrate,tetra-n-butyl
titanate, and ammonium hydroxide via a citrate-nitrate combustion process. Pulse electric current sintering (PECS) was carried out to obtain the compact crystalline BST. The effects of Cu2+, La3+
doping and (Cu2+, La3+) co-doping on the dielectric property of BST were investigated. It showed that Cu2+, La3+ doping and (Cu2+, La3+) co-doping in BST bulk could dramatically
modify the homogeneous of grain sizes in the sintered samples. The dielectric test showed that the Cu doping decreased not only loss tangent, but also the dielectric constant, while La doping and (La, Cu)
co-doping decreased the loss tangent, but increased the dielectric constant at 25℃ to some degree.

Key words: (Ba, Sr)TiO3, citrate-nitrate combustion, doping, PECS, dielectric property

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