Shape-Selective Dependence of Room Temperature Ferromagnetism Induced by Hierarchical ZnO Nanostructures

被引:117
|
作者
Motaung, D. E. [1 ]
Mhlongo, G. H. [1 ]
Nkosi, S. S. [2 ]
Malgas, G. F. [3 ]
Mwakikunga, B. W. [1 ]
Coetsee, E. [4 ]
Swart, H. C. [4 ]
Abdallah, H. M. I. [5 ]
Moyo, T. [5 ]
Ray, S. S. [1 ]
机构
[1] CSIR, Natl Ctr Nanostruct Mat, DST CSIR Nanotechnol Innovat Ctr, ZA-0001 Pretoria, South Africa
[2] CSIR Natl Laser Ctr, ZA-0001 Pretoria, South Africa
[3] Univ Western Cape, Dept Phys, ZA-7535 Bellville, South Africa
[4] Univ Orange Free State, Dept Phys, ZA-9300 Bloemfontein, South Africa
[5] Univ KwaZulu Natal, Sch Chem & Phys, ZA-4000 Durban, South Africa
关键词
ZnO; hydrothermal synthesis; morphology; magnetic properties; ELECTRON-PARAMAGNETIC-RESONANCE; MAGNETIC-PROPERTIES; GREEN LUMINESCENCE; PHOTOLUMINESCENCE; FILMS; MORPHOLOGY; BEHAVIOR; BAND; NANORODS; SURFACE;
D O I
10.1021/am501911y
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
We report on the room temperature ferromagnetism of various highly crystalline zinc oxide (ZnO) nanostructures, such as hexagonally shaped nanorods, nanocups, nanosamoosas, nanoplatelets, and hierarchical nano "flower-like" structures. These materials were synthesized in a shape-selective manner using simple microwave assisted hydrothermal synthesis. Thermogravimetric analyses demonstrated the as-synthesized ZnO nanostructures to be stable and of high purity. Structural analyses showed that the ZnO nanostructures are polycrystalline and wurtzite in structure, without any secondary phases. Combination of electron paramagnetic resonance, photoluminescence, and X-ray photoelectron spectroscopy studies revealed that the zinc vacancies (V-Zn) and singly ionized oxygen vacancies (V-O(+)) located mainly on the ZnO surface are the primary defects in ZnO structures. A direct link between ferromagnetism and the relative occupancy of the V-Zn and V-O(+) was established, suggesting that both V-Zn and V-O(+). on the ZnO surface plays a vital role in modulating ferromagnetic behavior. An intense structure- and shape-dependent ferromagnetic signal with an effective,g-value of >2.0 and a sextet hyperfine structure was shown. Moreover, a novel low field microwave absorption signal was observed and found to increase with an increase in microwave power and temperature.
引用
收藏
页码:8981 / 8995
页数:15
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