Novel nanostructures: from metal-filled carbon nanotubes to MgO nanoferns

Recently, numerous advances have been achieved by the fullerene/nanotube team at Sussex. Formerly, arc discharge techniques provided a unique method for generating fullerenes and carbon nanotubes. However, the yields and dimensional uniformity of these materials were not controllable. We have made s...

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Main Authors: Grobert, N, Hsu, W, Kroto, H, Mayne, M, Terrones, M, Watts, P, Whitby, R, Walton, D, Zhu, Y
Format: Conference item
Published: 2002
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author Grobert, N
Hsu, W
Kroto, H
Mayne, M
Terrones, M
Watts, P
Whitby, R
Walton, D
Zhu, Y
author_facet Grobert, N
Hsu, W
Kroto, H
Mayne, M
Terrones, M
Watts, P
Whitby, R
Walton, D
Zhu, Y
author_sort Grobert, N
collection OXFORD
description Recently, numerous advances have been achieved by the fullerene/nanotube team at Sussex. Formerly, arc discharge techniques provided a unique method for generating fullerenes and carbon nanotubes. However, the yields and dimensional uniformity of these materials were not controllable. We have made significant advances in this area by pyrolysis of selected organic precursors in order to generate: (a) aligned nanotube bundles of uniform length and diameter; (b) metal nanowires using benzene-based aerosols in conjunction with metallocenes; (c) CNx nanostructures. High-temperature methods have also been employed to produce (d) fern-like MgO nanostructures using MgO and Co mixtures. Finally, these novel materials are predicted to exhibit extraordinary physical and chemical properties and may thus prove useful, i.e. in the manufacture of (superstrong) composite materials and novel electronic or optical devices (e.g. field emission sources, ultra-thin TV displays, etc.).
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spelling oxford-uuid:2d441f59-6383-4aaf-a447-2b89b5962e422022-03-26T12:41:50ZNovel nanostructures: from metal-filled carbon nanotubes to MgO nanofernsConference itemhttp://purl.org/coar/resource_type/c_5794uuid:2d441f59-6383-4aaf-a447-2b89b5962e42Symplectic Elements at Oxford2002Grobert, NHsu, WKroto, HMayne, MTerrones, MWatts, PWhitby, RWalton, DZhu, YRecently, numerous advances have been achieved by the fullerene/nanotube team at Sussex. Formerly, arc discharge techniques provided a unique method for generating fullerenes and carbon nanotubes. However, the yields and dimensional uniformity of these materials were not controllable. We have made significant advances in this area by pyrolysis of selected organic precursors in order to generate: (a) aligned nanotube bundles of uniform length and diameter; (b) metal nanowires using benzene-based aerosols in conjunction with metallocenes; (c) CNx nanostructures. High-temperature methods have also been employed to produce (d) fern-like MgO nanostructures using MgO and Co mixtures. Finally, these novel materials are predicted to exhibit extraordinary physical and chemical properties and may thus prove useful, i.e. in the manufacture of (superstrong) composite materials and novel electronic or optical devices (e.g. field emission sources, ultra-thin TV displays, etc.).
spellingShingle Grobert, N
Hsu, W
Kroto, H
Mayne, M
Terrones, M
Watts, P
Whitby, R
Walton, D
Zhu, Y
Novel nanostructures: from metal-filled carbon nanotubes to MgO nanoferns
title Novel nanostructures: from metal-filled carbon nanotubes to MgO nanoferns
title_full Novel nanostructures: from metal-filled carbon nanotubes to MgO nanoferns
title_fullStr Novel nanostructures: from metal-filled carbon nanotubes to MgO nanoferns
title_full_unstemmed Novel nanostructures: from metal-filled carbon nanotubes to MgO nanoferns
title_short Novel nanostructures: from metal-filled carbon nanotubes to MgO nanoferns
title_sort novel nanostructures from metal filled carbon nanotubes to mgo nanoferns
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