Teng Xiaowei, Yang Hong
Department of Chemical Engineering, University of Rochester, Gavett Hall 206, Rochester, NY 14627, USA.
J Nanosci Nanotechnol. 2007 Jan;7(1):356-61.
This paper presents a synthesis of magnetic nanoparticles of samarium cobalt alloys and the use of iron oxide as a coating layer to prevent the rapid oxidation of as-made Sm-Co nanoparticles. The colloidal nanoparticles of Sm-Co alloys were made in octyl ether using samarium acetylacetonate and dicobalt octacarbonyl as precursors in a mixture of 1,2-hexadecanediol, oleic acid, and trioctylphosphine oxide (TOPO). Such Sm-Co nanoparticle could be readily oxidized by air and formed a CoO antiferromagnetic layer. Exchange biasing was observed for the surface oxidized nanoparticles. In situ thermal decomposition of iron pentacarbonyl was used to create iron oxide shells on the Sm-Co nanoparticles. The iron oxide shell could prevent Sm-Co nanoparticles from rapid oxidation upon the exposure to air at ambient conditions.
本文介绍了钐钴合金磁性纳米颗粒的合成,以及使用氧化铁作为涂层来防止制备的Sm-Co纳米颗粒快速氧化。以乙酰丙酮钐和二钴八羰基为前驱体,在1,2-十六烷二醇、油酸和三辛基氧化膦(TOPO)的混合物中,于辛醚中制备了Sm-Co合金的胶体纳米颗粒。这种Sm-Co纳米颗粒很容易被空气氧化,并形成CoO反铁磁层。观察到表面氧化的纳米颗粒存在交换偏置现象。利用五羰基铁的原位热分解在Sm-Co纳米颗粒上形成氧化铁壳层。该氧化铁壳层可防止Sm-Co纳米颗粒在环境条件下暴露于空气中时快速氧化。