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Optimization, Yield Studies and Morphology of WO(3)Nano-Wires Synthesized by Laser Pyrolysis in C(2)H(2)and O(2)Ambients—Validation of a New Growth Mechanism

Laser pyrolysis has been used to synthesize WO(3)nanostructures. Spherical nano-particles were obtained when acetylene was used to carry the precursor droplet, whereas thin films were obtained at high flow-rates of oxygen carrier gas. In both environments WO(3)nano-wires appear only after thermal an...

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Autores principales: Mwakikunga, BW, Forbes, A, Sideras-Haddad, E, Arendse, C
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3244893/
http://dx.doi.org/10.1007/s11671-008-9169-6
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author Mwakikunga, BW
Forbes, A
Sideras-Haddad, E
Arendse, C
author_facet Mwakikunga, BW
Forbes, A
Sideras-Haddad, E
Arendse, C
author_sort Mwakikunga, BW
collection PubMed
description Laser pyrolysis has been used to synthesize WO(3)nanostructures. Spherical nano-particles were obtained when acetylene was used to carry the precursor droplet, whereas thin films were obtained at high flow-rates of oxygen carrier gas. In both environments WO(3)nano-wires appear only after thermal annealing of the as-deposited powders and films. Samples produced under oxygen carrier gas in the laser pyrolysis system gave a higher yield of WO(3)nano-wires after annealing than the samples which were run under acetylene carrier gas. Alongside the targeted nano-wires, the acetylene-ran samples showed trace amounts of multi-walled carbon nano-tubes; such carbon nano-tubes are not seen in the oxygen-processed WO(3)nano-wires. The solid–vapour–solid (SVS) mechanism [B. Mwakikunga et al., J. Nanosci. Nanotechnol., 2008] was found to be the possible mechanism that explains the manner of growth of the nano-wires. This model, based on the theory from basic statistical mechanics has herein been validated by length-diameter data for the produced WO(3)nano-wires.
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spelling pubmed-32448932011-12-22 Optimization, Yield Studies and Morphology of WO(3)Nano-Wires Synthesized by Laser Pyrolysis in C(2)H(2)and O(2)Ambients—Validation of a New Growth Mechanism Mwakikunga, BW Forbes, A Sideras-Haddad, E Arendse, C Nanoscale Res Lett Nano Express Laser pyrolysis has been used to synthesize WO(3)nanostructures. Spherical nano-particles were obtained when acetylene was used to carry the precursor droplet, whereas thin films were obtained at high flow-rates of oxygen carrier gas. In both environments WO(3)nano-wires appear only after thermal annealing of the as-deposited powders and films. Samples produced under oxygen carrier gas in the laser pyrolysis system gave a higher yield of WO(3)nano-wires after annealing than the samples which were run under acetylene carrier gas. Alongside the targeted nano-wires, the acetylene-ran samples showed trace amounts of multi-walled carbon nano-tubes; such carbon nano-tubes are not seen in the oxygen-processed WO(3)nano-wires. The solid–vapour–solid (SVS) mechanism [B. Mwakikunga et al., J. Nanosci. Nanotechnol., 2008] was found to be the possible mechanism that explains the manner of growth of the nano-wires. This model, based on the theory from basic statistical mechanics has herein been validated by length-diameter data for the produced WO(3)nano-wires. Springer 2008-09-25 /pmc/articles/PMC3244893/ http://dx.doi.org/10.1007/s11671-008-9169-6 Text en Copyright ©2008 to the authors
spellingShingle Nano Express
Mwakikunga, BW
Forbes, A
Sideras-Haddad, E
Arendse, C
Optimization, Yield Studies and Morphology of WO(3)Nano-Wires Synthesized by Laser Pyrolysis in C(2)H(2)and O(2)Ambients—Validation of a New Growth Mechanism
title Optimization, Yield Studies and Morphology of WO(3)Nano-Wires Synthesized by Laser Pyrolysis in C(2)H(2)and O(2)Ambients—Validation of a New Growth Mechanism
title_full Optimization, Yield Studies and Morphology of WO(3)Nano-Wires Synthesized by Laser Pyrolysis in C(2)H(2)and O(2)Ambients—Validation of a New Growth Mechanism
title_fullStr Optimization, Yield Studies and Morphology of WO(3)Nano-Wires Synthesized by Laser Pyrolysis in C(2)H(2)and O(2)Ambients—Validation of a New Growth Mechanism
title_full_unstemmed Optimization, Yield Studies and Morphology of WO(3)Nano-Wires Synthesized by Laser Pyrolysis in C(2)H(2)and O(2)Ambients—Validation of a New Growth Mechanism
title_short Optimization, Yield Studies and Morphology of WO(3)Nano-Wires Synthesized by Laser Pyrolysis in C(2)H(2)and O(2)Ambients—Validation of a New Growth Mechanism
title_sort optimization, yield studies and morphology of wo(3)nano-wires synthesized by laser pyrolysis in c(2)h(2)and o(2)ambients—validation of a new growth mechanism
topic Nano Express
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3244893/
http://dx.doi.org/10.1007/s11671-008-9169-6
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