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Reduced-temperature ordering of FePt nanoparticle assembled films by Fe30Pt70/Fe3O4 core/shell structure
引用本文:贺淑莉,彭印,刘丽丽,姜宏伟,刘丽峰,郑鹉,王艾玲. Reduced-temperature ordering of FePt nanoparticle assembled films by Fe30Pt70/Fe3O4 core/shell structure[J]. 中国物理, 2007, 16(11): 3536-3540
作者姓名:贺淑莉  彭印  刘丽丽  姜宏伟  刘丽峰  郑鹉  王艾玲
作者单位:Department of Physics,Capital Normal University,Beijing100037,China
基金项目:Project supported by the National Natural Science Foundation of China (Grant No 50641006) and the Science Foundation of Education Commission of Beijing, China.
摘    要:In this paper, Fe30Pt70/Fe3O4 core/shell nanoparticles were synthesized by chemical routine and the layered polyethylenimine (PEI)-Fe30Pt70/Fe3O4 structure was constructed by molecule-mediated self-assembly technique. The dimension of core/shell structured nanoparticles was that of 4nm core and 2 nm shell. After annealing under a flow of forming gas (50%Ar2+30%H2) for 1 h at or above 400℃, the iron oxide shell was reduced to Fe and diffused to Pt-rieh core, which leaded to the formation of L1. phase FePt at low temperature. The x-ray diffraction results and magnetic properties measurement showed that the chemical ordering temperature of Fe30Pt70/Fe3O4 core/shell nanoparticles assembly can be reduced to as low as 400℃. The sample annealed at 400℃ showed the eoereivity of 4KOe with the applied field of 1.5T. The core/shell structure was suggested to be an effective way to reduce the ordering temperature obviously.[第一段]

关 键 词:薄膜 FePt 核心结构 纳米粒子 磁特性
文章编号:1009-1963/2007/16(11)/3536-05
修稿时间:2007-03-06

Reduced-temperature ordering of FePt nanoparticle assembled films by Fe30Pt70/Fe3O4 core/shell structure
He Shu-Li,Peng Yin,Liu Li-Li,Jiang Hong-Wei,Liu Li-Feng,Zheng Wu and Wang Ai-Ling. Reduced-temperature ordering of FePt nanoparticle assembled films by Fe30Pt70/Fe3O4 core/shell structure[J]. Chinese Physics, 2007, 16(11): 3536-3540
Authors:He Shu-Li  Peng Yin  Liu Li-Li  Jiang Hong-Wei  Liu Li-Feng  Zheng Wu  Wang Ai-Ling
Affiliation:Department of Physics, Capital Normal University, Beijing 100037, China
Abstract:
Keywords:FePt   core/shell structure   nanoparticles   magnetic properties
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