Fe1-xNix Alloy Nanoparticles Encapsulated Inside Carbon Nanotubes: Controlled Synthesis, Structure and Magnetic Properties

被引:7
|
作者
Ghunaim, Rasha [1 ,2 ]
Damm, Christine [1 ]
Wolf, Daniel [1 ]
Lubk, Axel [1 ]
Buechner, Bernd [1 ,3 ]
Mertig, Michael [2 ,4 ]
Hampel, Silke [1 ]
机构
[1] Leibniz Inst Solid State & Mat Res Dresden, Helmholtzstr 20, D-01069 Dresden, Germany
[2] Tech Univ Dresden, Inst Phys Chem, D-01062 Dresden, Germany
[3] Tech Univ Dresden, Inst Solid State Phys, D-01062 Dresden, Germany
[4] Kurt Schwabe Inst Mess & Sensortech eV Meinsberg, D-04736 Waldheim, Germany
来源
NANOMATERIALS | 2018年 / 8卷 / 08期
基金
欧洲研究理事会;
关键词
carbon nanotubes; annealing; crystal structure; binary nanoparticles; magnetic nanoparticles; ASSISTED SYNTHESIS; FENI ALLOY; SIZE; CAPILLARITY; CELLS; NANOCOMPOSITES; BIOMEDICINE; PERFORMANCE; COERCIVITY; PARTICLES;
D O I
10.3390/nano8080576
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In the present work, different synthesis procedures have been demonstrated to fill carbon nanotubes (CNTs) with Fe1-xNix alloy nanoparticles (x = 0.33, 0.5). CNTs act as templates for the encapsulation of magnetic nanoparticles, and provide a protective shield against oxidation as well as prevent nanoparticles agglomeration. By variation of the reaction parameters, the purity of the samples, degree of filling, the composition and size of filling nanoparticles have been tailored and therefore the magnetic properties. The samples were analyzed by scanning electron microscopy (SEM), transmission electron microscopy (TEM), Bright-field (BF) TEM tomography, X-ray powder diffraction, superconducting quantum interference device (SQUID) and thermogravimetric analysis (TGA). The Fe1-xNix-filled CNTs show a huge enhancement in the coercive fields compared to the corresponding bulk materials, which make them excellent candidates for several applications such as magnetic storage devices.
引用
收藏
页数:17
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