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Alternative low-cost approach to the synthesis of magnetic iron oxide nanoparticles by thermal decomposition of organic precursors

机译:通过有机前体的热分解合成磁性氧化铁纳米颗粒的另一种低成本方法

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摘要

A new approach to thermal decomposition of organic iron precursors is reported, which results in a simpler and more economical method to produce well crystallized γ-Fe_(2O)3 nanoparticles (NPs) with average sizes within the 3-17 nm range. The NPs were characterized by TEM, SAED, XRD, DLS-QELS, M?ssbauer spectroscopy at different temperatures, FT-IR and magnetic measurements. The obtained γ-Fe_(2O)3 NPs are coated with oleic acid and, in a lower quantity, with oleylamine (about 1.5 nm in thickness). It was shown that changing operative variables allows us to tune the average particle diameters and obtain a very narrow or monodisperse distribution of sizes. The γ-Fe_(2O)3 NPs behave superparamagnetically at room temperature and their magnetization saturation is reduced by about 34% in comparison with bulk maghemite. The results indicate that the distance between two neighbour NPs, generated by the coating, of about 3 nm is insufficient to inhibit interparticle magnetic interactions when the average diameter is 8.8 nm. The good quality of the NPs, obtained through the present low-cost and easy-handling process, open a new perspective for future technological applications.
机译:报道了一种新的有机铁前体热分解的方法,这导致了一种更简单,更经济的方法来生产结晶度好的,平均粒径在3-17 nm范围内的γ-Fe_(2O)3纳米粒子(NP)。通过在不同温度下的TEM,SAED,XRD,DLS-QELS,Msssbauer光谱,FT-IR和磁测量来表征NP。将获得的γ-Fe_(2O)3 NP涂上油酸,然后涂上少量的油胺(厚度约1.5 nm)。结果表明,改变操作变量使我们能够调整平均粒径,并获得非常狭窄或单分散的粒径分布。 γ-Fe_(2O)3 NP在室温下具有超顺磁性,并且与块状磁赤铁矿相比,其磁化饱和度降低了约34%。结果表明,当平均直径为8.8 nm时,涂层产​​生的两个相邻NP之间的距离约为3 nm,不足以抑制粒子间的磁性相互作用。通过目前的低成本和易于处理的过程获得的NP的优良品质,为未来的技术应用开辟了新的前景。

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