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首页> 外文期刊>Journal of Applied Physics >Hard magnetic FePt nanoparticles by salt-matrix annealing
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Hard magnetic FePt nanoparticles by salt-matrix annealing

机译:盐基退火法制备硬磁性FePt纳米颗粒

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摘要

To transfer face-centered-cubic (fcc) FePt nanoparticles to the face-centered-tetragonal (fct) phase with high magnetic anisotropy, heat treatments are necessary. The heat treatments lead to agglomeration and sintering of the nanoparticles. To prevent the particles from sintering, salts as the separating media (matrix) have been used for annealing the nanoparticles in our experiments. The fcc nanoparticles produced by chemical synthesis were mixed with NaCl powders. The mixture was then annealed in forming gas (93%H_2+7%Ar) in different conditions to complete the fcc to fct phase transition. After the annealing, the salt was washed out by water and monodisperse fct FePt nanoparticles were obtained. Detailed studies on the effect of the NaCl-to-FePt weight ratios (from 1:1 to 400:1) have been performed. It was found that a suitable NaCl-to-FePt ratio is the key to obtain monodisperse fct FePt nanoparticles. A higher NaCl-to-FePt ratio is needed for larger particles when the annealing conditions are the same. Increased annealing temperature and time should be accompanied by a higher NaCl-to-FePt ratio. Magnetic measurements show very high coercivity (up to 30 kOe) of the monodispersed fct nanoparticles by the salt-matrix annealing.
机译:为了以高磁各向异性将面心立方(fcc)FePt纳米颗粒转移到面心四方(fct)相,必须进行热处理。热处理导致纳米颗粒的附聚和烧结。为了防止颗粒烧结,在我们的实验中,使用盐作为分离介质(基质)对纳米颗粒进行了退火。通过化学合成生产的fcc纳米颗粒与NaCl粉混合。然后将混合物在不同条件下在形成气体(93%H_2 + 7%Ar)中退火,以完成从fcc到fct的相变。退火之后,将盐用水洗去,得到单分散的FePt纳米颗粒。已对NaCl与FePt重量比(从1:1到400:1)的影响进行了详细研究。发现合适的NaCl与FePt之比是获得单分散fct FePt纳米颗粒的关键。当退火条件相同时,较大的颗粒需要较高的NaCl与FePt的比率。退火温度和时间的增加应伴随更高的NaCl与FePt的比率。磁性测量显示,通过盐基退火,单分散的fct纳米粒子的矫顽力非常高(高达30 kOe)。

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