Applied Sciences (May 2020)

The Nano-Scale Modified BaTiO<sub>3</sub> Morphology Influence on Electronic Properties and Ceramics Fractal Nature Frontiers

  • Vojislav V. Mitic,
  • Goran Lazovic,
  • Chun-An Lu,
  • Vesna Paunovic,
  • Ivana Radovic,
  • Aleksandar Stajcic,
  • Branislav Vlahovic

DOI
https://doi.org/10.3390/app10103485
Journal volume & issue
Vol. 10, no. 10
p. 3485

Abstract

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The BaTiO3 ceramics applications based on electronic properties have very high gradient scientific and industrial-technological interests. Our scientific research has been based on nano BaTiO3 modified with Yttrium based organometallic salt (MOD-Y). The samples have been consolidated at a sintering temperature of 1350 °C. Within the study, the new frontiers for different electronic properties between the layers of BaTiO3 grains have been introduced. The research target was grain boundary investigations and the influence on dielectric properties. After scanning electron microscopy and dielectric measurements, it has been established that modified BaTiO3 samples with larger grains showed a better compact state that led to a higher dielectric constant value. DC bias stability was also investigated and showed a connection between the grain size and capacitance stability. Analyses of functions that could approximate experimental curves were successfully employed. Practical application of fractal corrections was performed, based on surface (αs) and pore size (αp) corrections, which resulted in obtainment of the relation between the capacitance and Curie temperature. Successful introduction of fractal corrections for capacitance-Curie temperature dependence for a set of experimental data is an important step towards further miniaturization of intergranular capacitors.

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