Shape-controlled synthesis and cathodoluminescence properties of elongated α-Fe2O3 nanostructures

被引:12
作者
Chioncel, M. F. [1 ]
Diaz-Guerra, C. [2 ]
Piqueras, J. [2 ]
机构
[1] Univ Bucharest, Fac Chem, Dept Phys, Bucharest 030018, Romania
[2] Univ Complutense Madrid, Fac Fis, Dept Fis Mat, E-28040 Madrid, Spain
关键词
cathodoluminescence; charge transfer states; heat treatment; iron compounds; magnetic semiconductors; nanotechnology; nanowires; scanning electron microscopy; transmission electron microscopy; X-ray diffraction;
D O I
10.1063/1.3054168
中图分类号
O59 [应用物理学];
学科分类号
摘要
alpha-Fe2O3 (hematite) nanostructures with various morphologies have been grown by thermal oxidation of compacted iron powder at temperatures between 700 and 900 degrees C. Different thermal treatments have been found to induce the growth of single-crystalline nanowires, nanobelts, nanoplates and featherlike structures, free and caped nanopillars, and pyramidal microcrystals or cactuslike microstructures. The experimental conditions leading to the different morphologies have been systematically investigated, as well as the possible growth mechanisms. The obtained nanostructures have been characterized by scanning electron microscopy (SEM), high-resolution transmission electron microscopy, x-ray diffraction, and cathodoluminescence (CL) spectroscopy in the SEM. The formation of the nanostructures induces changes in the intensity and spectral distribution of the CL emission, as compared with the bulk material. Ligand to metal charge transfer transitions as well as Fe3+ ligand field transitions are thought to be involved in the observed luminescence. The evolution of the panchromatic CL intensity in the visible range as a function of temperature shows some anomalies that may be induced by magnetic ordering effects.
引用
收藏
页数:8
相关论文
共 49 条
[31]   Synthesis of a α-Fe2O3 nanocrystal in its different morphological attributes:: growth mechanism, optical and magnetic properties [J].
Mitra, Subarna ;
Das, Soumen ;
Mandal, Kalyan ;
Chaudhuri, Subhadra .
NANOTECHNOLOGY, 2007, 18 (27)
[32]   Visible cathodoluminescence of Er ions in β-Ga2O3 nanowires and microwires [J].
Nogales, E. ;
Mendez, B. ;
Piqueras, J. .
NANOTECHNOLOGY, 2008, 19 (03)
[33]   Photocatalytic oxygen evolution on α-Fe2O3 films using Fe3+ ion as a sacrificial oxidizing agent [J].
Ohmori, T ;
Takahashi, H ;
Mametsuka, H ;
Suzuki, E .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2000, 2 (15) :3519-3522
[34]  
SHERMAN DM, 1985, AM MINERAL, V70, P1262
[35]  
Shi WS, 2000, ADV MATER, V12, P1343, DOI 10.1002/1521-4095(200009)12:18<1343::AID-ADMA1343>3.0.CO
[36]  
2-Q
[37]   NEUTRON DIFFRACTION BY PARAMAGNETIC AND ANTIFERROMAGNETIC SUBSTANCES [J].
SHULL, CG ;
STRAUSER, WA ;
WOLLAN, EO .
PHYSICAL REVIEW, 1951, 83 (02) :333-345
[38]   GROWTH OF OXIDE WHISKERS ON METALS AT HIGH TEMPERATURE [J].
TAKAGI, R .
JOURNAL OF THE PHYSICAL SOCIETY OF JAPAN, 1957, 12 (11) :1212-1218
[39]   Bicrystalline hematite nanowires [J].
Wang, RM ;
Chen, YF ;
Fu, YY ;
Zhang, H ;
Kisielowski, C .
JOURNAL OF PHYSICAL CHEMISTRY B, 2005, 109 (25) :12245-12249
[40]   Controlled growth of large-area, uniform, vertically aligned arrays of α-Fe2O3 nanobelts and nanowires [J].
Wen, XG ;
Wang, SH ;
Ding, Y ;
Wang, ZL ;
Yang, SH .
JOURNAL OF PHYSICAL CHEMISTRY B, 2005, 109 (01) :215-220