Ali Wajahat, Xinghan Chen, Hongxia Yin, Zhilong Zheng, Songliu Yuan
School of Physics, Huazhong University of Science and Technology, Wuhan 430074, People's Republic of China.
J Phys Condens Matter. 2024 Jul 22;36(42). doi: 10.1088/1361-648X/ad559c.
Herein, we report the Fe-substituted CoSnFeO(0 ⩽ x ⩽ 0.4) inverse spinel's oxide using the solid-state reaction method. X-ray reveals the single-phase cubic structure with space group Fd3m. With increasing Fe in CoSnFeOspinel oxide, the transition temperature rise. The ac susceptibility at different frequencies also confirms a spin-glassy state at lower temperatures. The strong exchange bias effect appears in the sample having Fe substitution (= 0.2) under the presence of constant temperature ∼10 K. The high-temperature susceptibility of Curie-Wise fitting shows that the system changes from antiferromagnetic exchange (< 0.2) to ferromagnetic exchange (> 0.2).
在此,我们报道了采用固态反应法制备的铁取代钴锡铁氧体((0⩽x⩽0.4))反尖晶石氧化物。X射线显示其具有空间群为Fd3m的单相立方结构。随着钴锡铁氧体氧化物中铁含量的增加,转变温度升高。不同频率下的交流磁化率也证实了在较低温度下存在自旋玻璃态。在约10K的恒定温度下,铁取代量((= 0.2))的样品中出现了强交换偏置效应。居里 - 外斯拟合的高温磁化率表明,该体系从反铁磁交换((< 0.2))转变为铁磁交换((> 0.2))。