Epitaxial magnetite nanorods with enhanced room temperature magnetic anisotropy

被引:29
作者
Chandra, Sayan [1 ]
Das, Raja [2 ]
Kalappattil, Vijaysankar [2 ]
Eggers, Tatiana [2 ]
Harnagea, Catalin [1 ]
Nechache, Riad [3 ]
Manh-Huong Phan [2 ]
Rosei, Federico [1 ]
Srikanth, Hariharan [2 ]
机构
[1] INRS, Ctr Energie Mat & Telecommun, 1650 Blvd Lionel Boulet, Varennes, PQ J3X 1S2, Canada
[2] Univ S Florida, Dept Phys, Tampa, FL 33620 USA
[3] Ecole Technol Super, Dept Genie Elect, 1100 Rue Notre Dame Ouest, Montreal, PQ H3C 1K3, Canada
基金
加拿大自然科学与工程研究理事会; 加拿大创新基金会;
关键词
RANDOM-ACCESS MEMORY; THIN-FILMS; IRON-OXIDE; FLEXIBLE SPINTRONICS; FE3O4; NANOPARTICLES; VERWEY TRANSITION; XPS ANALYSIS; METAL-OXIDE; FIELD; MAGNETORESISTANCE;
D O I
10.1039/c7nr01541k
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Nanostructured magnetic materials with well-defined magnetic anisotropy are very promising as building blocks in spintronic devices that operate at room temperature. Here we demonstrate the epitaxial growth of highly oriented Fe3O4 nanorods on a SrTiO3 substrate by hydrothermal synthesis without the use of a seed layer. The epitaxial nanorods showed biaxial magnetic anisotropy with an order of magnitude difference between the anisotropy field values of the easy and hard axes. Using a combination of conventional magnetometry, transverse susceptibility, magnetic force microscopy (MFM) and magneto-optic Kerr effect (MOKE) measurements, we investigate magnetic behavior such as temperature dependent magnetization and anisotropy, along with room temperature magnetic domain formation and its switching. The interplay of epitaxy and enhanced magnetic anisotropy at room temperature, with respect to randomly oriented powder Fe3O4 nanorods, is discussed. The results obtained identify epitaxial nanorods as useful materials for magnetic data storage and spintronic devices that necessitate tunable anisotropic properties with sharp magnetic switching phenomena.
引用
收藏
页码:7858 / 7867
页数:10
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