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arxiv: 1605.08006 · v2 · pith:YQBT7ZQHnew · submitted 2016-05-25 · ❄️ cond-mat.mes-hall · cond-mat.mtrl-sci

Structural, magnetic, dielectric and mechanical properties of (Ba,Sr)MnO₃ ceramics

classification ❄️ cond-mat.mes-hall cond-mat.mtrl-sci
keywords wereenergybsmodetecteddetermineddielectricmagneticmeasurements
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Ceramic samples, produced by conventional sintering method in ambient air, 6H-SrMnO$_3$(6H-SMO), 15R-BaMnO$_3$(15R-BMO), 4H-Ba$_{0.5}$Sr$_{0.5}$MnO$_3$(4H-BSMO) were studied. In the XRD measurements for SMO the new anomalies of the lattice parameters at 600-800 K range and the increasing of thermal expansion coefficients with a clear maximum in a vicinity at 670 K were detected. The N$\acute{e}$el phase transition for BSMO was observed at $T_N$=250 K in magnetic measurements and its trace was detected in dielectric, FTIR, DSC, and DMA experiments. The enthalpy and entropy changes of the phase transition for BSMO at $T_N$ were determined as 17.5 J/mol and 70 mJ/K mol, respectively. The activation energy values and relaxation times characteristic for relaxation processes were determined from the Arrhenius law. Results of ab initio simulations showed that the contribution of the exchange correlation energy to the total energy is about 30%.

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