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Microstructural and magnetic properties of core-shell Ni-Ce nanocomposite particles assemblies

机译:芯壳Ni-Ce纳米复合粒子组件的微观结构和磁性性能

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Novel magnetic core-shell Ni-Ce nanocomposite particles (15-50 nm) are presented. SEM observation indicates a strongly ferromagnetic interacting order with chain-like features among Ni-Ce nanocomposite particle assemblies. Typical HREM image demonstrates that many planar defects (i.e. stacking faults) exist in large Ni core zone (10-45 nm); the innermost NiCe alloy and outermost NiO oxide exist in the thin shell layers ( 3-5 nm). Nano-diffraction patterns show an indication of well-defined spots characteristic and confirm the nature of this core-shell nanocomposite particles. Superparamagnetic relaxation behavior above average blocking temperature (T{sub}B = 170 K) for Ni-Ce nanocomposite particles assemblies have been exhibited, this superparamagnetic behavior is found to be modified by interparticle interactions, which depending on the applied field; size distribution and coupling with the strong interparticle interaction. In addition, an antiferromagnetic order occurs with a Neel temperature T{sub}N of about 11 K due to Ce ion magnetic order function. A spin-flop transition is also observed below T{sub}N at a certain applied field and low temperature.
机译:提出了新型磁芯 - 壳Ni-Ce纳米复合粒子(15-50nm)。 SEM观察表明Ni-Ce纳米复合粒子组件中具有链状特征的强铁磁性相互作用顺序。典型的HREM图像表明,大型Ni核心区(10-45nm)存在许多平面缺陷(即堆叠故障);薄壳层(3-5nm)中存在最内漂亮的合金和最外层的Nioo氧化物。纳米衍射图案显示了明确斑点特征的指示,并确认该核 - 壳纳米复合颗粒的性质。已经表现出用于Ni-Ce纳米复合颗粒组件的平均封闭温度(T {Sub} B = 170k)的超顺磁性松弛行为,发现该超顺磁性行为被颗粒间相互作用进行修饰,这取决于所施加的场;尺寸分布和耦合与强外部相互作用。另外,由于CE离子磁性阶函数,用约11k的Neel温度T {uS} n发生反铁磁性。在某个施加的场和低温下也观察到旋转翻转过渡的下面的T {Sub} N。

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