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Simultaneous effects of surface spins: rarely large coercivity, high remanence magnetization and jumps in the hysteresis loops observed in CoFe2O4 nanoparticles

机译:同时表面自旋的影响:很少大的矫顽力、高剩磁磁化和跳跃的磁滞回路中观察到CoFe2O4 nanoparticles

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摘要

Well-dispersed uniform cobalt ferrite nanoparticles were synthesized by thermal decomposition of a metal-organic salt in organic solvent with a high boiling point. Some of the nanoparticles were diluted in a SiO2 matrix and then the undiluted and diluted samples were characterized and their magnetic behavior explored. The undiluted and diluted samples exhibited maximum coercivity H-c of 23 817 and 15 056 Oe at 10 K, respectively, which are the highest values reported to date, and the corresponding ratios of remanence (M-r) to saturation (M-s) magnetization (M-r/M-s) were as high as 0.85 and 0.76, respectively. Interestingly, the magnetic properties of the samples changed at 200 K, which was observed in magnetic hysteresis M(H) loops and zero-field cooling curves as well as the temperature dependence of H-c, M-r/M-s, anisotropy, dipolar field, and the magnetic grain size. Below 200 K, both samples have large effective anisotropy, which arises from the surface spins, resulting in large H-c and M-r/M-s. Above 200 K, the effective anisotropy decreases because there is no contribution from surface spins, while the dipolar interaction increases, resulting in small H-c and M-r/M-s. Our results indicate that strong anisotropy and weak dipolar interaction tend to increase H-c and M-r/M-s, and also clarify that the jumps around H = 0 in M(H) loops can be attributed to the reorientation of surface spins. This work exposes the underlying mechanism in nanoscale magnetic systems, which should lead to improved magnetic performance.
机译:的说法一致钴铁氧体纳米粒子被热合成分解的有机盐在有机具有高沸点溶剂。纳米颗粒在二氧化硅矩阵和稀释稀释,稀释样品特征及其磁行为探索。表现出最大的矫顽力·hc·23 817和15分别056 Oe 10 K的最高价值迄今报告,相应比例的剩磁(先生)饱和度(m)磁化(先生/ m)分别高达0.85和0.76。有趣的是,磁的特性改变了在200 K,样品中观察到的磁滞(H)循环和零场冷却曲线以及温度依赖·hc·,先生/ m、各向异性、偶极场,磁性颗粒大小。两个样品都大有效各向异性,它起源于表面旋转,导致大·hc·和先生/ m。各向异性,因为没有降低从表面旋转的贡献,而偶极相互作用增加,导致小·hc·和先生/ m。各向异性和弱偶极相互作用增加·hc·和先生/ m,并澄清跳跃在H = 0 M (H)循环归因于表面旋转的重新定位。这项工作使底层机制纳米磁系统,这将导致改善磁性性能。

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