Large-Scale Synthesis of Single-Crystalline Iron Oxide Magnetic Nanorings

被引:439
|
作者
Jia, Chun-Jiang [1 ]
Sun, Ling-Dong [1 ]
Luo, Feng [2 ]
Han, Xiao-Dong [3 ]
Heyderman, Laura J. [2 ]
Yan, Zheng-Guang [1 ]
Yan, Chun-Hua [1 ]
Zheng, Kun [3 ]
Zhang, Ze [3 ]
Takano, Mikio [4 ]
Hayashi, Naoaki [4 ]
Eltschka, Matthias [5 ]
Klaeui, Mathias [5 ]
Ruediger, Ulrich [5 ]
Kasama, Takeshi [6 ]
Cervera-Gontard, Lionel [7 ]
Dunin-Borkowski, Rafal E. [7 ]
Tzvetkov, George
Raabe, Joerg
机构
[1] Peking Univ, Beijing Natl Lab Mol Sci, State Key Lab Rare Earth Mat Chem & Applicat, PKU HKU Joint Lab Rare Earth Mat & Bioinorgan Che, Beijing 100871, Peoples R China
[2] Paul Scherrer Inst, Lab Micro & Nanotechnol, CH-5232 Villigen, Switzerland
[3] Beijing Univ Technol, Inst Microstruct & Properties Adv Mat, Beijing 100022, Peoples R China
[4] Kyoto Univ, Inst Chem Res, Uji, Kyoto 6110011, Japan
[5] Univ Konstanz, Fachbereich Phys, D-78457 Constance, Germany
[6] Univ Cambridge, Dept Mat Sci & Met, Cambridge CB2 3QZ, England
[7] Tech Univ Denmark, Ctr Electron Nanoscopy, DK-2800 Lyngby, Denmark
关键词
D O I
10.1021/ja805152t
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
We present an innovative approach to the production of single-crystal iron oxide nanorings employing a solution-based route. Single-crystal hematite (alpha-Fe2O3) nanorings were synthesized using a double anion-assisted hydrothermal method (involving phosphate and sulfate ions), which can be divided into two stages: (1) formation of capsule-shaped alpha-Fe2O3 nanoparticles and (2) preferential dissolution along the long dimension of the elongated nanoparticles (the c axis of alpha-Fe2O3) to form nanorings. The shape of the nanorings is mainly regulated by the adsorption of phosphate ions on faces parallel to c axis of alpha-Fe2O3 during the nanocrystal growth, and the hollow structure is given by the preferential dissolution of the alpha-Fe2O3 along the c axis due to the strong coordination of the sulfate ions. By varying the ratios of phosphate and sulfate ions to ferric ions, we were able to control the size, morphology, and surface architecture to produce a variety of three-dimensional hollow nanostructures. These can then be converted to magnetite (Fe3O4) and maghemite (gamma-Fe2O3) by a reduction or reduction-oxidation process while preserving the same morphology. The structures and magnetic properties of these single-crystal alpha-Fe2O3, Fe3O4, and gamma-Fe2O3 nanorings were characterized by various analytical techniques. Employing off-axis electron holography, we observed the classical single-vortex magnetic state in the thin magnetite nanorings, while the thicker rings displayed an intriguing three-dimensional magnetic configuration. This work provides an easily scaled-up method for preparing tailor-made iron oxide nanorings that could meet the demands of a variety of applications ranging from medicine to magnetoelectronics.
引用
收藏
页码:16968 / 16977
页数:10
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