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Sintering Effect of Annealed FePt Nanocrystal Films Observed by Magnetic Force Microscopy

机译:磁力显微镜观察退火的FePt纳米晶薄膜的烧结效果

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Chemically synthesized FePt nanocrystals can exhibit room temperature ferromagnetism after being annealed at temperatures above 500degC. In thick films composed of FePt nanocrystals, the coercivity can be quite large. However, the coercivity of thin films has been found to decrease significantly with decreasing thickness, to the point that ferromagnetism at room temperature is lost. We studied 12 to 55 nm thick films by using magnetic force microscopy (MFM) under external applied fields. We made smooth films by spin casting 4-nm-diameter FePt nanocrystals and annealing them at 605degC-630degC. Thin FePt films showed lower coercivity than thick films. To help interpret the MFM images, we obtained complementary magnetic and structural data by superconducting quantum interference device (SQUID) magnetometry, transmission electron microscopy (TEM), and X-ray diffraction. We conclude that the magnetic properties of these films are strongly affected by nanocrystal aggregation that occurs during annealing
机译:化学合成的FePt纳米晶体在高于500摄氏度的温度下退火后,可以显示室温铁磁性。在由FePt纳米晶体组成的厚膜中,矫顽力可能很大。然而,已经发现薄膜的矫顽力随着厚度的减小而显着降低,以至于在室温下失去铁磁性。我们通过在外部应用场下使用磁力显微镜(MFM)研究了12至55 nm厚的膜。我们通过旋铸直径为4 nm的FePt纳米晶体并在605℃至630℃下对其进行退火来制作光滑的薄膜。 FePt薄膜比矫顽膜的矫顽力低。为了帮助解释MFM图像,我们通过超导量子干涉仪(SQUID)磁力测定法,透射电子显微镜(TEM)和X射线衍射获得了互补的磁性和结构数据。我们得出的结论是,退火过程中发生的纳米晶体聚集会严重影响这些薄膜的磁性

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