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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Synthesis of Monodisperse Iron Nanoparticles with a High Saturation Magnetization Using an Fe(CO)_x—Oleylamine Reacted Precursor
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Synthesis of Monodisperse Iron Nanoparticles with a High Saturation Magnetization Using an Fe(CO)_x—Oleylamine Reacted Precursor

机译:Fe(CO)_x-油酰胺反应前体合成高饱和磁化强度的单分散铁纳米颗粒

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摘要

Monodisperse Fe nanoparticles with a high saturation magnetization were synthesized by thermal decomposition of a newly developed Fe(CO)_x-oleylamine reacted precursor. The coordinate bond of the Fe(CO)_x-oleylamine reacted precursor is different from conventional Fe(CO)5, and the CO ligands are partially replaced by oleylamine. The coordinate bond of the Fe(CO)_x-oleylamine reacted precursor had a large influence on the size of the Fe nanoparticles, and as a result, the nanoparticle diameter could be controlled in the range from 2.3 to 10 nm by changing the reaction temperature and time for the precursor. The saturation magnetizations for 10 and 2.3 nm diameter NPs were 192 and 160 emu/gFe at 5 K. The high M_s of the Fe NPs was attributed to lesser amounts of impurities, such as C and O.
机译:通过新开发的Fe(CO)_x-油胺反应前体的热分解,合成了具有高饱和磁化强度的单分散Fe纳米颗粒。 Fe(CO)_x-油胺反应的前体的配位键与常规的Fe(CO)5不同,并且CO配体被油胺部分取代。 Fe(CO)_x-油胺反应的前体的配位键对Fe纳米粒子的尺寸有很大的影响,结果,通过改变反应温度,可以将纳米粒子的直径控制在2.3至10 nm的范围内。和时间为前体。直径为10和2.3 nm的NP的饱和磁化强度在5 K下分别为192和160 emu /gFe。FeNP的高M_s归因于较少的杂质,例如C和O。

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