Magnetic properties of nanostructured γ-Ni-46Fe alloy synthesized by a mechanochemical process

被引:28
作者
Qin, XY [1 ]
Lee, JS
Kim, JG
机构
[1] Hanyang Univ, Dept Met & Mat Sci, Ansan 425791, South Korea
[2] Hanyang Univ, Dept Phys, Seoul 133791, South Korea
[3] Acad Sinica, Inst Solid State Phys, Hefei 230031, Peoples R China
关键词
D O I
10.1063/1.371022
中图分类号
O59 [应用物理学];
学科分类号
摘要
Magnetic properties and their relations to microstructures of nanostructured gamma-Ni-46Fe alloy (nano gamma-Ni-46Fe), synthesized by a mechanochemical process, were investigated at temperatures from similar to 300 down to 8.5 K. The results indicated that the nano gamma-Ni-46Fe with average grain sizes of 20-220 nm displayed ferromagnetism, with no superparamagnetic phenomenon being observed in the temperature range investigated. Coercivity increased with decreasing grain size obeying the law H(c)proportional to 1/d well in the grain size regime d >similar to 100 nm. Contrary to prediction from the random anisotropy model, however, the coercivity at both 300 and 8.5 K was not found to decrease with further decreasing grain size in the size range d=20-100 nm, although the grain sizes were then obviously smaller than the evaluated value (102 nm) of ferromagnetic exchange length, suggesting random anisotropy did not dominate its magnetic behavior. Instead, it was demonstrated that the further increase of coercivity with decreasing grain size as d < 100 nm can be attributed to the effect of shape anisotropy in the nano gamma-Ni-46Fe. Saturation magnetization M-s of the nano gamma-Ni-46Fe was found to decrease with decreasing grain size, with a magnitude of similar to 11% smaller than that of the coarse-grained standard being reached at d approximate to 20 nm. Experiments revealed that this decrease of M-s was closely related to the increase of oxygen content in the specimens, implying oxidation would be responsible for the decrease of M-s. By assuming that the oxygen existed in the form of surface oxidation layers wrapping the nano-grains, a thickness of similar to 0.8 nm for the oxidation layers was derived from the magnitudes of M-s corresponding to different grain sizes. (C) 1999 American Institute of Physics. [S0021-8979(99)01716-8].
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页码:2146 / 2154
页数:9
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