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Magnetism of MnBi-Based Nanomaterials

机译:MnBi基纳米材料的磁性

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Nanostructured MnBi ribbons doped with impurity elements including B, C, Fe, Hf, Sm and Tb were prepared using the arc melting and melt-spinning techniques. The melt-spun ribbons were annealed in vacuum furnace at 350$^{circ}{rm C}$ to obtain the intended hexagonal structure. The external impurity doping made a significant change in the magnetic properties of the nanostructured MnBi ribbons including a decrease in saturation magnetization $({rm M}_{rm s})$ and anisotropy energy (K) and an increase in coercivity $({rm H}_{rm c})$. However, Hf and C co-doping showed the opposite effect with a small increase in both ${rm M}_{rm s}$ and K. Interestingly, the anisotropy energy of the boron doped sample increased by about 15% irrespective of the small decrease in magnetization. A significant increase in ${rm H}_{rm c}$ of MnBi ribbons was found due to Hf, Tb and Sm doping. ${rm H}_{rm c}$ as high as 13 kOe was achieved in Hf-doped sample after the sample was aligned in a magnetic field. A thermal hysteresis was observed at the structural phase transition of MnBi, which shifts by about 5 K towards higher temperatures due to impurity doping. The observed magnetic properties of the impurity doped MnBi ribbons are explained as the consequences of the disorder and the competing ferromagnetic and antiferromagnetic interactions.
机译:利用电弧熔化和熔纺技术制备了掺杂有B,C,Fe,Hf,Sm和Tb等杂质元素的纳米结构MnBi带。将熔融纺丝的带在真空炉中于350 $ ^ {circ} {rm C} $ 进行退火,以获得所需的六角形结构。外部杂质掺杂使纳米结构MnBi带的磁性能发生了显着变化,包括饱和磁化强度的降低<配方公式type =“ inline”> $({rm M} _ {rm s} )$ 和各向异性能(K)以及矫顽力的增加 $({rm H} _ {rm c})$ 。但是,Hf和C共掺杂显示了相反的效果,同时 $ {rm M} _ {rm s} $ <有趣的是,掺硼样品的各向异性能增加了约15%,而与磁化强度的小幅下降无关。由于Hf,Tb和Hf,MnBi碳带的 $ {rm H} _ {rm c} $ 显着增加。 m掺杂。掺H样品中的 $ {rm H} _ {rm c} $ 在掺H的样品中达到了13 kOe在磁场中对齐。在MnBi的结构相变处观察到热滞,由于杂质掺杂,该相向较高温度移动了约5K。观察到的掺杂杂质的MnBi带的磁性能被解释为无序以及竞争性铁磁和反铁磁相互作用的结果。

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