Grain size effect on the nonlinear dielectric properties of barium titanate ceramics

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Abstract

The nonlinear dielectric properties of dense BaTiO3 ceramics with grain size of 1 μm-90 nm were investigated. In the finest ceramics, the permittivity reduces below 1000 and a remarkable nonhysteretic linear dc-tunability [ε (E)] is obtained at high field, above 40 kV/cm. The observed behavior was explained by considering the nanostructured ceramic as a composite formed by ferroelectric grains, whose nonlinearity is reducing, and by low-permittivity nonferroelectric grain boundaries, whose volume fraction increases when decreasing the grain size. Reducing the grain size in ferroelectric dense materials is an alternative route to accomplish the application requirements: nonhysteretic tunability and permittivity below 1000. © 2010 American Institute of Physics.

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Curecheriu, L., Buscaglia, M. T., Buscaglia, V., Zhao, Z., & Mitoseriu, L. (2010). Grain size effect on the nonlinear dielectric properties of barium titanate ceramics. Applied Physics Letters, 97(24). https://doi.org/10.1063/1.3526375

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