ELECTRIC AND MAGNETIC PROPERTIES OF Ba0.97Ca0.03Ti0.94Sn0.06O3-Mn0.85Ni0.15Zn0.15Fe2O4 MULTIFERROIC CERAMIC COMPOSITES FABRICATED VIA THE SOLID-STATE COMBUSTION TECHNIQUE

dc.contributor.authorSonchaopria, Nutkamon
dc.contributor.authorMeechob, Jirayut
dc.contributor.authorThatawong, Bhoowadol
dc.contributor.authorVittayakorn, Naratip
dc.contributor.authorPinitsoontorn, Supree
dc.contributor.authorRittidech, Aurawan
dc.contributor.authorJantaratana, Pongsakorn
dc.contributor.authorChootin, Suphornphun
dc.contributor.authorBongkarn, Theerachai
dc.date.accessioned2026-08-06T10:49:03Z
dc.date.available2026-08-06T10:49:03Z
dc.date.issued2025-01-01
dc.description.abstractMultiferroic composites with the general formula (1-x)(Ba0.97Ca0.03Ti0.94Sn0.06O3)-x(Mn0.85Ni0.15Zn0.15Fe2O4) (BCTS/MNZF) (x = 0.1, 0.2, 0.3, 0.4, and 0.5) were prepared using the solid-state combustion method. The structure, morphology, dielectric, ferroelectric, magnetic, and magnetoelectric properties were analyzed. The samples were sintered at 1,300ºC for 2 h. The X-ray Diffraction (XRD) patterns revealed tetragonal perovskite, orthorhombic perovskite, and cubic spinel structures corresponding to the BCTS and MNZF phases. Secondary phases (Mn2O3 and SnO) appeared in the sintered samples with x>0.2. Increasing MNZF content enhanced ferrite grain growth in the composites. The dielectric constant showed an overall decreasing trend with increasing MNZF content, with a smaller effect at lower frequencies. At lower frequencies, the dielectric constant declined with increasing frequency before stabilizing around 10 kHz. As ferrite content increased, the density, dielectric constant, and magnetoelectric coefficient (αME) decreased from 5.66 to 5.12 g/cm³, 1388 to 862, and 7.24 to 4.05 mV/cm·Oe, respectively. While the saturation magnetization (Ms) rose substantially from 0.75 to 13.14 emu/g. These findings offer valuable insights into enhancing lead-free multiferroic composite ceramics for targeted applications in magnetoelectric devices.
dc.identifier.citationSuranaree Journal of Science and Technology, 32(4), 1-10, 2025
dc.identifier.doi10.55766/sujst11623
dc.identifier.issn0858849X
dc.identifier.other2-s2.0-105018509737
dc.identifier.urihttps://dspace.kmitl.ac.th/handle/123456789/16414
dc.sourceSuranaree Journal of Science and Technology
dc.subjectBCTS-MNZF
dc.subjectFerroelectric
dc.subjectFerromagnetic
dc.subjectMultiferroic
dc.subjectSolid-state combustion
dc.titleELECTRIC AND MAGNETIC PROPERTIES OF Ba0.97Ca0.03Ti0.94Sn0.06O3-Mn0.85Ni0.15Zn0.15Fe2O4 MULTIFERROIC CERAMIC COMPOSITES FABRICATED VIA THE SOLID-STATE COMBUSTION TECHNIQUE
dc.typeArticle

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