Varying geometrical structures of tin oxide nanomaterial grown on silicon (100) substrate

Tin oxide nanomaterials were grown on silicon substrate using horizontal vapor phase growth technique. Optimum results were obtained at a temperature of 1200oC and at a deposition time of 3 hours. Scanning electron microscope and energy dispersive x-ray spectroscopy were employed to characterize the...

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Main Authors: Co, A., Sowl, S., Ladines, Alvin Noe C., De Los Reyes, Ronald B., Alcantara, Norberto T., Santos, Gil Nonato C., Quiroga, Reuben V.
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Published: Animo Repository 2008
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Online Access:https://animorepository.dlsu.edu.ph/faculty_research/5145
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spelling oai:animorepository.dlsu.edu.ph:faculty_research-60752022-08-15T02:12:59Z Varying geometrical structures of tin oxide nanomaterial grown on silicon (100) substrate Co, A. Sowl, S. Ladines, Alvin Noe C. De Los Reyes, Ronald B. Alcantara, Norberto T. Santos, Gil Nonato C. Quiroga, Reuben V. Tin oxide nanomaterials were grown on silicon substrate using horizontal vapor phase growth technique. Optimum results were obtained at a temperature of 1200oC and at a deposition time of 3 hours. Scanning electron microscope and energy dispersive x-ray spectroscopy were employed to characterize the synthesized products. Image analysis indicated that the products consisted of nanomaterials ranging from nanobelts, nanowires, nanochips, nanorods and nanoribbons with preferred orientation and without unwanted SnO2 particles. The grown materials were then compared to SnO2 nanomaterial grown without a substrate. The nanorods and nanobelts growing form the quartz tube are random in direction compared to those grown on silicon substrates although the same growth technique was used.. 2008-01-01T08:00:00Z text https://animorepository.dlsu.edu.ph/faculty_research/5145 Faculty Research Work Animo Repository Nanostructured materials Physics
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
topic Nanostructured materials
Physics
spellingShingle Nanostructured materials
Physics
Co, A.
Sowl, S.
Ladines, Alvin Noe C.
De Los Reyes, Ronald B.
Alcantara, Norberto T.
Santos, Gil Nonato C.
Quiroga, Reuben V.
Varying geometrical structures of tin oxide nanomaterial grown on silicon (100) substrate
description Tin oxide nanomaterials were grown on silicon substrate using horizontal vapor phase growth technique. Optimum results were obtained at a temperature of 1200oC and at a deposition time of 3 hours. Scanning electron microscope and energy dispersive x-ray spectroscopy were employed to characterize the synthesized products. Image analysis indicated that the products consisted of nanomaterials ranging from nanobelts, nanowires, nanochips, nanorods and nanoribbons with preferred orientation and without unwanted SnO2 particles. The grown materials were then compared to SnO2 nanomaterial grown without a substrate. The nanorods and nanobelts growing form the quartz tube are random in direction compared to those grown on silicon substrates although the same growth technique was used..
format text
author Co, A.
Sowl, S.
Ladines, Alvin Noe C.
De Los Reyes, Ronald B.
Alcantara, Norberto T.
Santos, Gil Nonato C.
Quiroga, Reuben V.
author_facet Co, A.
Sowl, S.
Ladines, Alvin Noe C.
De Los Reyes, Ronald B.
Alcantara, Norberto T.
Santos, Gil Nonato C.
Quiroga, Reuben V.
author_sort Co, A.
title Varying geometrical structures of tin oxide nanomaterial grown on silicon (100) substrate
title_short Varying geometrical structures of tin oxide nanomaterial grown on silicon (100) substrate
title_full Varying geometrical structures of tin oxide nanomaterial grown on silicon (100) substrate
title_fullStr Varying geometrical structures of tin oxide nanomaterial grown on silicon (100) substrate
title_full_unstemmed Varying geometrical structures of tin oxide nanomaterial grown on silicon (100) substrate
title_sort varying geometrical structures of tin oxide nanomaterial grown on silicon (100) substrate
publisher Animo Repository
publishDate 2008
url https://animorepository.dlsu.edu.ph/faculty_research/5145
_version_ 1767196277275099136