凝聚态物理
磁电阻
铁磁性
材料科学
磁化
磁性半导体
自旋电子学
电阻率和电导率
半导体
光致发光
磁场
物理
光电子学
量子力学
作者
Kavil Veettil Shilna,Subasa C. Sahoo,K. J. Thomas
标识
DOI:10.1016/j.apmt.2022.101427
摘要
• Room temperature ferromagnetism observed in BaBiO 3 nanoparticles. • Exchange spring-like magnetic interaction established. • Significant negative magnetoresistance observed at room temperature. • Two distinct activation energies observed below and above a transition temperature. • Tuning of magnetic, optical, and electrical properties with growth conditions. Materials showing semiconducting and magnetic properties have significant commercial value presently, particularly in the field of spintronics. We report a novel ferromagnetic behavior and a negative magnetoresistance in the non-magnetic semiconductor perovskite material BaBiO 3 at room temperature. We also observe an associated exchange spring like magnetic behavior in the sample annealed at a higher temperature. We discuss these effects based on a model of defect induced magnetic centers and magnetic domains in the material. The enhanced magnetization and exchange spring like behavior observed in the sample annealed at a higher temperature of 800 °C is attributed to higher number of magnetic defects and two dominant sizes of magnetic clusters. Photoluminescence and energy dispersive X-ray spectra corroborate the explanation based on charge induced defects in the material. Interplay of Bi 3+ and Bi 5+ states in BaBiO 3 , leads to a semiconducting behavior at room temperature. From the temperature dependence of the resistivity two distinct activation energies of 0.21 eV and 0.14 eV above and below 256 K, respectively, have been measured.
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