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Facile synthetic route to nanosized ferrites by using mesoporous silica as a hard template

机译:使用介孔二氧化硅作为硬模板,轻松合成纳米铁氧体

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Spinel ferrite nanoparticles (AFe_2O_4; A = Mn,Ni, Cu, Co) of around 10-20 nm have been successfully synthesized viaa simple nanocasting route using metal nitrates as precursors and mesoporous silica gel as a hard template. Spinel nanoparticles were formed under a nitrogen atmosphere by the high-temperature decomposition of a mixture of metal nitrates that fill the silica pores. The decomposition reactions occurred in the confined space provided by the mesopores of the silica template. Under these conditions, the silica walls restricted the growth of the oxide particles formed and so nanosized particles were obtained. The incorporation of different cations into the spinel ferrite enabled us to easily modulate the magnetic properties of the nanomaterials prepared by the template method. Depending on the chemical composition and temperature, we were able to obtain samples that display reversible magnetic behaviour (zero coercivity field) and samples with coercivity values as high as 1.3 T (13 000 Oe).
机译:以金属硝酸盐为前驱体,以介孔硅胶为硬模板,通过简单的纳米铸造工艺成功合成了约10-20 nm的尖晶石型铁氧体纳米粒子(AFe_2O_4; A = Mn,Ni,Cu,Co)。尖晶石纳米颗粒是在氮气气氛下通过填充二氧化硅孔的金属硝酸盐混合物的高温分解而形成的。分解反应发生在二氧化硅模板的中孔所提供的有限空间中。在这些条件下,二氧化硅壁限制了所形成的氧化物颗粒的生长,因此获得了纳米尺寸的颗粒。尖晶石铁氧体中掺入不同的阳离子使我们能够轻松调节通过模板法制备的纳米材料的磁性能。根据化学成分和温度,我们能够获得显示出可逆磁行为(矫顽力场为零)的样品以及矫顽力值高达1.3 T(13 000 Oe)的样品。

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