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NiFe_(2)O_(4) nanoparticles formed in situ in silica matrix by mechanical activation

机译:NiFe_(2)O_(4)二氧化硅基体中机械活化原位形成的纳米颗粒

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摘要

Nanocrystalline nickel ferrite (NiFe_(2)O_(4)) particles were successfully synthesized in situ in an amorphous silica matrix by mechanical activation at room temperature. Phase development in the amorphous precursors, derived via a modified sol-gel synthesis route, with increasing mechanical activation time was studied in detail by employing transmission electron microscopy, x-ray diffraction, and Raman spectroscopy. NiFe_(2)O_(4) nanoparticles of 8.05 nm in mean particle size with a standard deviation of 1.24 nm, which were well dispersed in the silica matrix, were realized by 30 h of mechanical activation. The phase formation of nanocrystalline NiFe_(2)O_(4) particles involves the nucleation of Fe_(3)O_(4) in amorphous silica at the initial stage of mechanical activation, followed by the growth of nickel ferrite by incorporation of Ni~(2+) caions into Fe_(3)O_(4). Their magnetic anisotropy, surface spin disorder, and cation distribution are investigated by considering both the strain imposed by silica matrix and the buffer effect during mechanical activation.
机译:在室温下通过机械活化在非晶硅基体中成功原位合成了纳米晶镍铁氧体(NiFe_(2)O_(4))颗粒。采用透射电子显微镜、X射线衍射和拉曼光谱,详细研究了通过改进的溶胶-凝胶合成路线获得的无定形前驱体的相发展,并随着机械活化时间的增加而增加。NiFe_(2)O_(4)个平均粒径为8.05 nm、标准偏差为1.24 nm的纳米颗粒,通过机械活化30 h实现了在二氧化硅基体中的良好分散。纳米晶NiFe_(2)O_(4)颗粒的相形成涉及Fe_(3)O_(4)在机械活化初始阶段在非晶态二氧化硅中的成核,然后通过将Ni~(2+)caion掺入Fe_(3)O_(4)中而生长镍铁氧体。通过考虑二氧化硅基体施加的应变和机械活化过程中的缓冲效应,研究了它们的磁各向异性、表面自旋无序和阳离子分布。

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