Low-temperature synthesis and nanomagnetism of large-area α-Fe2O3 nanobelts
Large-area one dimensional (1D) α-Fe2O3 nanostructures were grown on iron substrates by catalyst-free thermal oxidation process at low temperatures in air. The structure characterization revealed that the nanostructures are single crystalline α-Fe2O3. Two kinds of α-Fe2O3 nanostructures, nanobelts a...
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sg-ntu-dr.10356-1009752020-06-01T10:13:52Z Low-temperature synthesis and nanomagnetism of large-area α-Fe2O3 nanobelts Zhong, Minglong Liu, Zhongwu Yu, Hongya Zhong, Xichun Zeng, Dechang Ramanujan, R. V. School of Materials Science & Engineering DRNTU::Engineering::Materials Large-area one dimensional (1D) α-Fe2O3 nanostructures were grown on iron substrates by catalyst-free thermal oxidation process at low temperatures in air. The structure characterization revealed that the nanostructures are single crystalline α-Fe2O3. Two kinds of α-Fe2O3 nanostructures, nanobelts and nanoflakes, were obtained due to the different growth temperature range. A surface diffusion mechanism is proposed to account for the nanobelts and nanoflakes growth. The Morin temperature TM of pure 1D α-Fe2O3 nanostructures is 121 K, which is far below their bulk counterparts. The coercive field depends on temperature, and takes values 471 Oe at 5 K and about 260 Oe when the temperature is greater than TM , respectively. 2014-03-28T07:07:35Z 2019-12-06T20:31:39Z 2014-03-28T07:07:35Z 2019-12-06T20:31:39Z 2013 2013 Journal Article Zhong, M., Liu, Z., Yu, H., Zhong, X., Zeng, D., & Ramanujan, R. V. (2013). Low-temperature synthesis and nanomagnetism of large-area α-Fe2O3 nanobelts. Journal of Nanoscience and Nanotechnology, 13(2), 1525-1529. 1533-4880 https://hdl.handle.net/10356/100975 http://hdl.handle.net/10220/19028 10.1166/jnn.2013.5976 en Journal of nanoscience and nanotechnology © 2013 American Scientific Publishers. |
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DRNTU::Engineering::Materials Zhong, Minglong Liu, Zhongwu Yu, Hongya Zhong, Xichun Zeng, Dechang Ramanujan, R. V. Low-temperature synthesis and nanomagnetism of large-area α-Fe2O3 nanobelts |
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Large-area one dimensional (1D) α-Fe2O3 nanostructures were grown on iron substrates by catalyst-free thermal oxidation process at low temperatures in air. The structure characterization revealed that the nanostructures are single crystalline α-Fe2O3. Two kinds of α-Fe2O3 nanostructures, nanobelts and nanoflakes, were obtained due to the different growth temperature range. A surface diffusion mechanism is proposed to account for the nanobelts and nanoflakes growth. The Morin temperature TM of pure 1D α-Fe2O3 nanostructures is 121 K, which is far below their bulk counterparts. The coercive field depends on temperature, and takes values 471 Oe at 5 K and about 260 Oe when the temperature is greater than TM , respectively. |
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School of Materials Science & Engineering |
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School of Materials Science & Engineering Zhong, Minglong Liu, Zhongwu Yu, Hongya Zhong, Xichun Zeng, Dechang Ramanujan, R. V. |
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Article |
author |
Zhong, Minglong Liu, Zhongwu Yu, Hongya Zhong, Xichun Zeng, Dechang Ramanujan, R. V. |
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Zhong, Minglong |
title |
Low-temperature synthesis and nanomagnetism of large-area α-Fe2O3 nanobelts |
title_short |
Low-temperature synthesis and nanomagnetism of large-area α-Fe2O3 nanobelts |
title_full |
Low-temperature synthesis and nanomagnetism of large-area α-Fe2O3 nanobelts |
title_fullStr |
Low-temperature synthesis and nanomagnetism of large-area α-Fe2O3 nanobelts |
title_full_unstemmed |
Low-temperature synthesis and nanomagnetism of large-area α-Fe2O3 nanobelts |
title_sort |
low-temperature synthesis and nanomagnetism of large-area α-fe2o3 nanobelts |
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2014 |
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https://hdl.handle.net/10356/100975 http://hdl.handle.net/10220/19028 |
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1681058169909936128 |