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Synthesis and characterization of core-shell structure silica-coated Fe29.5Ni70.5 nanoparticles

机译:核壳结构二氧化硅包覆的Fe29.5Ni70.5纳米粒子的合成与表征

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In view of potential applications of magnetic particles in biomedicine and electromagnetic devices, we made use of the classical Stober method-base-catalyzed hydrolysis and condensation of tetraethoxysilane (TEOS)-to encapsulate FeNi nanoparticles within a silica shell. An original stirring system under high power ultrasound made it possible to disperse the otherwise agglomerated particles. Sonication guaranteed particles remained dispersed during the Stober synthesis and also improved the efficiency of the method. The coated particles are characterized by electron microscopy (TEM) and spectroscopy (EDX) showing a core-shell structure with a uniform layer of silica. Silica coating does not affect the core magnetic properties. Indeed, all samples are ferromagnetic at 77 K and room temperature and the Curie point remains unchanged. Only the coercive force shows an unexpected non-monotonic dependence on silica layer thickness.
机译:鉴于磁性粒子在生物医学和电磁设备中的潜在应用,我们利用经典的Stober方法进行碱催化的四乙氧基硅烷(TEOS)水解和缩合,将FeNi纳米粒子封装在二氧化硅壳中。在高功率超声下的原始搅拌系统可以分散原本团聚的颗粒。超声处理确保了在Stober合成过程中颗粒保持分散状态,并提高了方法的效率。涂覆的颗粒通过电子显微镜(TEM)和光谱学(EDX)表征,显示出具有均匀二氧化硅层的核-壳结构。二氧化硅涂层不会影响铁芯的磁性。实际上,所有样品在77 K和室温下都是铁磁性的,居里点保持不变。仅矫顽力显示出对二氧化硅层厚度的出乎意料的非单调依赖性。

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