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Ferroic states and phase coexistence in BiFeO3-BaTiO3 solid solutions
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10.1063/1.4766450
/content/aip/journal/jap/112/10/10.1063/1.4766450
http://aip.metastore.ingenta.com/content/aip/journal/jap/112/10/10.1063/1.4766450

Figures

Image of FIG. 1.
FIG. 1.

X-ray diffraction patterns and Rietveld refinement results for (a) 0.8BiFeO3–0.2BaTiO3 and (b) 0.5BiFeO3–0.5BaTiO3 solid solutions. Inset: enlargements of the 22.5° and 32° regions.

Image of FIG. 2.
FIG. 2.

X-ray diffraction patterns and Rietveld refinement results for three different regions.

Image of FIG. 3.
FIG. 3.

(a) Lattice parameters for the R3c unit cell, (b) fraction of the Cm phase and the β monoclinic angle, (c) lattice parameters for the Cm unit cell, and (d) remnant polarizations and magnetizations as a function of the BiFeO3 concentration.

Image of FIG. 4.
FIG. 4.

Ferroelectric hysteresis loops for (x)BiFeO3–(1-x)BaTiO3 ceramics at room temperature and 10 Hz.

Image of FIG. 5.
FIG. 5.

(a) and (b) magnetic hysteresis loops for (x)BiFeO3–(1-x)BaTiO3 ceramics at room temperature.

Image of FIG. 6.
FIG. 6.

Arrot plots for the (x)BiFeO3–(1-x)BaTiO3 solid solutions at room temperature.

Image of FIG. 7.
FIG. 7.

Mössbauer spectra (open circles) for (a) 0.8BiFeO3–0.2BaTiO3 and (b) 0.3BiFeO3–0.7BaTiO3 solid solutions at room temperature. The line through the data is the fitted spectrum. The dashed and dotted lines correspond to the fitted subspectra.

Tables

Generic image for table
Table I.

Mössbauer hyperfine parameters determined from the spectral adjustment.

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/content/aip/journal/jap/112/10/10.1063/1.4766450
2012-11-20
2014-04-16
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752b84549af89a08dbdd7fdb8b9568b5 journal.articlezxybnytfddd
Scitation: Ferroic states and phase coexistence in BiFeO3-BaTiO3 solid solutions
http://aip.metastore.ingenta.com/content/aip/journal/jap/112/10/10.1063/1.4766450
10.1063/1.4766450
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