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Magnetic Properties of Tetragonal Cobalt Manganese Ferrite Particles Prepared Using the Molten Salt Method

机译:使用熔盐法制备四方钴锰铁氧体颗粒的磁性性能

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Both magnetization and magnetic anisotropy of CoMnxFe2-xO4 particles composed of the Jahn-Teller (JT) Mn3+ and Co2+ ions with an expected large magnetoelastic effect were investigated. CoMnxFe2-xO4 particles were prepared by using a molten salt method with KBr as a fluxing agent. A tetragonally distorted spinel structure was confirmed for x = 1.3 or higher. This suggests that an increase in Mn3+ ions causes JT distortion of c/a > 1. However, Mn3+ doping causes spin canting and decreased magnetization. A large saturation magnetization of M-s = 44 emu/g and high coercivity of H-c = 4300 Oe were observed for the sample with x = 1.4 at 10 K. In addition, the magnetic anisotropy field, H-A, and H-c increased with the increasing x from x = 1.3, where JT distortion was first observed.
机译:研究了由Jahn-Teller(JT)MN3 +和CO2 +离子组成的COMNXFE2-XO4颗粒的磁化和磁各向异性进行了预期的具有预期的大磁弹性效果。通过使用具有KBR作为助熔剂的熔融盐法制备ComnxFe2-XO4颗粒。确认四边形扭曲的尖晶石结构x = 1.3或更高。这表明Mn3 +离子的增加导致C / A> 1的JT变形。然而,Mn3 +掺杂导致自旋倾沉并降低磁化。 MS = 44 emu / g的大饱和磁化强度和HC = 4300 OE的高矫顽力,样品在10k下与X = 1.4的样品观察到。另外,磁各向异性场,HA和HC随着x的增加而增加x = 1.3,首先观察到JT失真。

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