Magnetic nanobraids of iron-doped amorphous silica

Using silicon, iron oxide, and graphite powders as source materials, braid-like nanostructures of iron-doped amorphous silica were fabricated by vapor-phase transport. Each braid was composed of a bunch of entangled nanowires with uniform size. The formation of the nanobraids was mainly due to simul...

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Main Authors: Yu, M. B., Xiong, Y. Z., Chen, J. S., Xu, Chunxiang, Sun, Xiaowei, Dong, Zhili
Other Authors: School of Materials Science & Engineering
Format: Article
Language:English
Published: 2011
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Online Access:https://hdl.handle.net/10356/93777
http://hdl.handle.net/10220/6889
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-937772023-07-14T15:50:21Z Magnetic nanobraids of iron-doped amorphous silica Yu, M. B. Xiong, Y. Z. Chen, J. S. Xu, Chunxiang Sun, Xiaowei Dong, Zhili School of Materials Science & Engineering DRNTU::Engineering::Materials::Magnetic materials Using silicon, iron oxide, and graphite powders as source materials, braid-like nanostructures of iron-doped amorphous silica were fabricated by vapor-phase transport. Each braid was composed of a bunch of entangled nanowires with uniform size. The formation of the nanobraids was mainly due to simultaneous nucleation in a vapor–liquid–solid process. Magnetic measurement showed that the iron-doped silica nanobraids were ferromagnetic at room temperature. Published version 2011-07-12T06:00:19Z 2019-12-06T18:45:24Z 2011-07-12T06:00:19Z 2019-12-06T18:45:24Z 2004 2004 Journal Article Xu, C., Sun, X., Yu, M. B., Xiong, Y. Z., Dong, Z. L. & Chen, J. S. (2004). Magnetic nanobraids of iron-doped amorphous silica. Applied Physics Letters, 85 (22), 5364-5366. https://hdl.handle.net/10356/93777 http://hdl.handle.net/10220/6889 10.1063/1.1830686 en Applied physics letters © 2004 American Institute of Physics. This paper was published in Applied Physics Letters and is made available as an electronic reprint (preprint) with permission of American Institute of Physics. The paper can be found at: [DOI: http://dx.doi.org/10.1063/1.1830686]. One print or electronic copy may be made for personal use only. Systematic or multiple reproduction, distribution to multiple locations via electronic or other means, duplication of any material in this paper for a fee or for commercial purposes, or modification of the content of the paper is prohibited and is subject to penalties under law. 3 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Materials::Magnetic materials
spellingShingle DRNTU::Engineering::Materials::Magnetic materials
Yu, M. B.
Xiong, Y. Z.
Chen, J. S.
Xu, Chunxiang
Sun, Xiaowei
Dong, Zhili
Magnetic nanobraids of iron-doped amorphous silica
description Using silicon, iron oxide, and graphite powders as source materials, braid-like nanostructures of iron-doped amorphous silica were fabricated by vapor-phase transport. Each braid was composed of a bunch of entangled nanowires with uniform size. The formation of the nanobraids was mainly due to simultaneous nucleation in a vapor–liquid–solid process. Magnetic measurement showed that the iron-doped silica nanobraids were ferromagnetic at room temperature.
author2 School of Materials Science & Engineering
author_facet School of Materials Science & Engineering
Yu, M. B.
Xiong, Y. Z.
Chen, J. S.
Xu, Chunxiang
Sun, Xiaowei
Dong, Zhili
format Article
author Yu, M. B.
Xiong, Y. Z.
Chen, J. S.
Xu, Chunxiang
Sun, Xiaowei
Dong, Zhili
author_sort Yu, M. B.
title Magnetic nanobraids of iron-doped amorphous silica
title_short Magnetic nanobraids of iron-doped amorphous silica
title_full Magnetic nanobraids of iron-doped amorphous silica
title_fullStr Magnetic nanobraids of iron-doped amorphous silica
title_full_unstemmed Magnetic nanobraids of iron-doped amorphous silica
title_sort magnetic nanobraids of iron-doped amorphous silica
publishDate 2011
url https://hdl.handle.net/10356/93777
http://hdl.handle.net/10220/6889
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