期刊文献+

Thermal oxide synthesis and characterization of Fe_3O_4 nanorods and Fe_2O_3 nanowires 被引量:2

Thermal oxide synthesis and characterization of Fe_3O_4 nanorods and Fe_2O_3 nanowires
原文传递
导出
摘要 Fe3O4 nanorods and Fe2O3 nanowires have been synthesized through a simple thermal oxide reaction of Fe with C2H2O4 solution at 200-600℃ for 1 h in the air. The morphology and structure of Fe3O4 nanorods and Fe2O3 nanowires were detected with powder X-ray diffraction, scanning electron microscopy and transmission electron microscopy. The influence of temperature on the morphology development was experimentally investigated. The results show that the polycrystals Fe3O4 nanorods with cubic structure and the average diameter of 0.5-0.8 μm grow after reaction at 200-500℃ for 1 h in the air. When the temperature was 600℃, the samples completely became Fe2O3 nanowires with hexagonal structure. It was found that C2H2O4 molecules had a significant effect on the formation of Fe3O4 nanorods. A possible mechanism was also proposed to account for the growth of these Fe3O4 nanorods. Fe3O4 nanorods and Fe2O3 nanowires have been synthesized through a simple thermal oxide reaction of Fe with C2H2O4 solution at 200-600℃ for 1 h in the air. The morphology and structure of Fe3O4 nanorods and Fe2O3 nanowires were detected with powder X-ray diffraction, scanning electron microscopy and transmission electron microscopy. The influence of temperature on the morphology development was experimentally investigated. The results show that the polycrystals Fe3O4 nanorods with cubic structure and the average diameter of 0.5-0.8 μm grow after reaction at 200-500℃ for 1 h in the air. When the temperature was 600℃, the samples completely became Fe2O3 nanowires with hexagonal structure. It was found that C2H2O4 molecules had a significant effect on the formation of Fe3O4 nanorods. A possible mechanism was also proposed to account for the growth of these Fe3O4 nanorods.
出处 《Science China Chemistry》 SCIE EI CAS 2009年第5期599-604,共6页 中国科学(化学英文版)
基金 Supported by the Fund of Weinan Teacher’s University (Grant No. 08YKZ008) the National Natural Science Foundation of China (Grant No. 20573072) the Doc-toral Fund of Ministry of Education of China (Grant No. 20060718010)
关键词 thermal OXIDE process NANORODS NANOWIRES C2H2O4 IRON SHEET thermal oxide process, nanorods, nanowires, C2H2O4, iron sheet
  • 相关文献

参考文献30

  • 1Geng B Y,Ma J Z,Liu X W,Du Q B,Kong M G,Zhang L D.Hy-drophilic polymer assisted synthesis of room-temperature ferromag-netic Fe3O4 nanochains. Applied Physics Letters . 2007
  • 2Xu L Q,Du J,Li P,Qian Y T.In situ synthesis, magnetic property, and formation mechanism of Fe3O4 particles encapsulated in 1D bamboo-shaped carbon microtubes. Journal of Physical Chemistry B . 2006
  • 3Peikov V T,Jeon K S,Lane A M.Transverse susceptibility of magnetic inks milling process. Journal of Magnetism and Magnetic Materials . 1999
  • 4Cao D F,He P L,Hu N F.Electrochemical biosensors utilising electron transfer in heme proteins immobilised on Fe3O4nanopar-ticles. The Analyst . 2003
  • 5Kim D J,Lyu Y K,Choi H N et al.Nafion-Stabilized Magnetic Nanoparticles(Fe3O4)for Ru(bpy)32+(bpy=bipyridine)Electrogenerated Chemiluminescence Sensor. Chemical Communications . 2005
  • 6Jain,TK,Morales,MA,Sahoo,SK,Leslie-Pelecky,DL,Labhasetwar,V.Iron Oxide Nanoparticles for Sustained Delivery of Anticancer Agents. Molecular Pharmaceutics . 2005
  • 7Tan S T,Wendorff J H,Pietzonka C et al.Biocompatible and biodegradable polymer nanofibers displaying superpara- magnetic properties. ChemPhysChem . 2005
  • 8Parka S I,Kimb J H,Kim C O.Preparation of photosensitizer-coated magnetic fluid for treatment of tumor. Journal of Magnetism and Magnetic Materials . 2004
  • 9Veiseh,O,Sun,C,Gunn,J,Kohler,N,Gabikian,P,Lee,D,Bhattarai,N,Ellenbogen,R,Sze,R,Hallahan,A,Olson,J,Zhang,M.Optical and MRI multifunctional nanoprobe for targeting gliomas. Nano Letters . 2005
  • 10Park,J.,Lee,E.,Hwang,N.M.,Kang,M.S.,Kim,S.C.,Hwang,Y.,Park,J.G.,Noh,H.J.,Kini,J.Y.,Park,J.H.,Hyeon,T.One-nanometer-scale size-controlled synthesis of monodisperse magnetic iron oxide nanoparticles. Angew.Chem.-Int.Edit . 2005

同被引文献7

引证文献2

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部