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双功能和智能 Fe3O4@titanium 氧化物核/壳纳米粒子的合成与性质。

The synthesis and properties of bifunctional and intelligent Fe3O4@titanium oxide core/shell nanoparticles.

机构信息

College of Materials Science and Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.

出版信息

Dalton Trans. 2013 May 21;42(19):7233-40. doi: 10.1039/c3dt32559h.

Abstract

A simple, one-pot solvothermal method has been demonstrated for the preparation of bifunctional Fe3O4@titanium oxide core/shell nanoparticles. In a typical procedure, tetraalkoxyl titanium Ti(OC4H9)4 and FeCl3 as precursors were added into ethylene glycol and further solvothermal treatment was used to synthesize the core/shell particles. The core/shell particles were characterized by scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray diffraction (XRD), SQUID MPMS and rheometry. The morphological results showed titanium oxide nanorods with 100-200 nm length and 10-20 nm diameter coated on the surface of 200-300 nm Fe3O4 submicrospheres. Reaction time, the titanium source, the barium salt etc. have an influence on the morphology of core/shell particles. The core/shell particles can not only respond to an external magnetic field, but also to an electric field--a novel application of electrorheological fluid.

摘要

一种简单的一锅溶剂热法被用来制备双功能的 Fe3O4@二氧化钛核/壳纳米粒子。在典型的实验步骤中,四乙氧基钛 Ti(OC4H9)4 和 FeCl3 作为前驱体被加入到乙二醇中,进一步的溶剂热处理被用来合成核/壳粒子。核/壳粒子通过扫描电子显微镜(SEM)、透射电子显微镜(TEM)、X 射线衍射(XRD)、超导量子干涉磁强计(SQUID MPMS)和流变仪进行了表征。形态学结果表明,在 200-300nm 的 Fe3O4 亚微米球的表面上包覆了长 100-200nm、直径 10-20nm 的二氧化钛纳米棒。反应时间、钛源、钡盐等都会对核/壳粒子的形态产生影响。核/壳粒子不仅可以对外磁场做出响应,也可以对电场做出响应——这是电流变液的一种新应用。

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