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具有可控粒径、形状和组成的化学合成 FePt 纳米颗粒。

Chemically synthesized FePt nanoparticles with controlled particle size, shape and composition.

机构信息

Department of Physics and Astronomy, University of Delaware, Newark, DE 19716, USA.

出版信息

Nanotechnology. 2009 Dec 2;20(48):485602. doi: 10.1088/0957-4484/20/48/485602. Epub 2009 Oct 30.

Abstract

Monodisperse Fe-Pt nanoparticles have been prepared by thermal decomposition of iron pentacarbonyl [Fe(CO)5] and reduction of platinum acetylacetonate [Pt(acac)2] with dibenzyl ether in the presence of oleic acid and oleyl amine. The particle composition was adjusted by changing the Fe(CO)5/Pt(acac)2 molar ratio while fixing the Pt(acac)2 amount. The size of FePt nanoparticles was tuned by controlling the injection temperature of the iron precursor. The low injection temperature of precursors and the usage of surfactants as a reaction solvent, together with a slow heating to a low refluxing temperature, were found to be the key parameters for the formation of cubic nanoparticles. Nanorods were formed by simply adjusting the injection time of the surfactants. The as-made nanoparticles had a low coercivity, which was increased to 7 kOe when annealed at 800 degrees C for 1 h.

摘要

通过热分解五羰基铁[Fe(CO)5]和二苄醚存在下的乙酰丙酮铂[Pt(acac)2]与油酸和油胺的还原,制备了单分散的 Fe-Pt 纳米粒子。通过改变 Fe(CO)5/Pt(acac)2 摩尔比,同时固定 Pt(acac)2 的量,来调整粒子的组成。通过控制铁前体的注入温度来调整 FePt 纳米粒子的尺寸。发现低温注入前体和使用表面活性剂作为反应溶剂,以及缓慢加热至低回流温度,是形成立方纳米粒子的关键参数。通过简单地调整表面活性剂的注入时间,形成了纳米棒。所制备的纳米粒子具有低矫顽力,在 800°C 下退火 1 小时后,矫顽力增加到 7 kOe。

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