Volume 29, Issue 1
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ChemInform Abstract: Dopant Distribution and Grain Growth Control in BaTiO3 Ceramics Doped with ZnO—SiO2—P2O5.

A. C. CABALLERO

A. C. CABALLERO

Inst. Ceram. Vidrio, CSIC, E-28500 Arganda del Rey, Madrid, Spain

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J. F. FERNANDEZ

J. F. FERNANDEZ

Inst. Ceram. Vidrio, CSIC, E-28500 Arganda del Rey, Madrid, Spain

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C. MOURE

C. MOURE

Inst. Ceram. Vidrio, CSIC, E-28500 Arganda del Rey, Madrid, Spain

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P. DURAN

P. DURAN

Inst. Ceram. Vidrio, CSIC, E-28500 Arganda del Rey, Madrid, Spain

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J. L. G. FIERRO

J. L. G. FIERRO

Inst. Ceram. Vidrio, CSIC, E-28500 Arganda del Rey, Madrid, Spain

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First published: 24 June 2010

Abstract

ChemInform is a weekly Abstracting Service, delivering concise information at a glance that was extracted from about 100 leading journals. To access a ChemInform Abstract of an article which was published elsewhere, please select a “Full Text” option. The original article is trackable via the “References” option.

ChemInform Abstract

Simultaneous incorporation of small amounts of SiO2, P2O5, and ZnO into BaTiO3 ceramics increases the sintering temperature by ≈200 °C, but sintering occurs much faster and hence both maximum density and shrinkage rate are reached at lower temperature as compared to the undoped material. For the doped material porosity coalescence and removal is promoted in the first sintering step and high density is reached for the sintering range 1175—1225 °C with little grain growth. For samples sintered below 1250 °C dopants are incorporated into BaTiO3 as solid solution. Low boundary conductivity and a low level of dielectric losses as well as the flat dependence of the permittivity on the temperature make these ceramics promising for X7R capacitor applications.

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