Effect of growth temperature and catalyst on the formation of one-dimensional silicon nanostructures via thermal evaporation technique.

Pembentukan silikon berstruktur nano melalui teknik pengewapan terma telah dikaji dengan fungsi suhu penyepuhlindap dan pemangkin yang memainkan peranan penting dalam proses ini. Serbuk silikon sebagai bahan mentah telah digunakan bagi membolehkan pengewapan berlaku pada suhu yang tinggi (900-1100oC...

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Main Author: Adnan, Mohd Azam Mohd
Format: Thesis
Language:English
Published: 2011
Subjects:
Online Access:http://eprints.usm.my/43106/
http://eprints.usm.my/43106/1/Pages_from_EFFECT_OF_GROWTH_TEMPERATURE_AND_CATALYST_ON.pdf
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author Adnan, Mohd Azam Mohd
author_facet Adnan, Mohd Azam Mohd
author_sort Adnan, Mohd Azam Mohd
building USM Institutional Repository
collection Online Access
description Pembentukan silikon berstruktur nano melalui teknik pengewapan terma telah dikaji dengan fungsi suhu penyepuhlindap dan pemangkin yang memainkan peranan penting dalam proses ini. Serbuk silikon sebagai bahan mentah telah digunakan bagi membolehkan pengewapan berlaku pada suhu yang tinggi (900-1100oC) dalam aliran gas argon (Ar). The formation of silicon nanostructures, via thermal evaporation techniques, was studied as a function of annealing temperature and catalyst (Au and AuPd).The silicon powder, serving as the starting source material, was evaporated at a high temperature (900-1100°C) in the flow of argon gas.
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format Thesis
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institution Universiti Sains Malaysia
institution_category Local University
language English
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publishDate 2011
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spelling usm-431062018-12-05T03:04:53Z http://eprints.usm.my/43106/ Effect of growth temperature and catalyst on the formation of one-dimensional silicon nanostructures via thermal evaporation technique. Adnan, Mohd Azam Mohd TN1-997 Mining engineering. Metallurgy Pembentukan silikon berstruktur nano melalui teknik pengewapan terma telah dikaji dengan fungsi suhu penyepuhlindap dan pemangkin yang memainkan peranan penting dalam proses ini. Serbuk silikon sebagai bahan mentah telah digunakan bagi membolehkan pengewapan berlaku pada suhu yang tinggi (900-1100oC) dalam aliran gas argon (Ar). The formation of silicon nanostructures, via thermal evaporation techniques, was studied as a function of annealing temperature and catalyst (Au and AuPd).The silicon powder, serving as the starting source material, was evaporated at a high temperature (900-1100°C) in the flow of argon gas. 2011-03 Thesis NonPeerReviewed application/pdf en http://eprints.usm.my/43106/1/Pages_from_EFFECT_OF_GROWTH_TEMPERATURE_AND_CATALYST_ON.pdf Adnan, Mohd Azam Mohd (2011) Effect of growth temperature and catalyst on the formation of one-dimensional silicon nanostructures via thermal evaporation technique. Masters thesis, Universiti Sains Malaysia.
spellingShingle TN1-997 Mining engineering. Metallurgy
Adnan, Mohd Azam Mohd
Effect of growth temperature and catalyst on the formation of one-dimensional silicon nanostructures via thermal evaporation technique.
title Effect of growth temperature and catalyst on the formation of one-dimensional silicon nanostructures via thermal evaporation technique.
title_full Effect of growth temperature and catalyst on the formation of one-dimensional silicon nanostructures via thermal evaporation technique.
title_fullStr Effect of growth temperature and catalyst on the formation of one-dimensional silicon nanostructures via thermal evaporation technique.
title_full_unstemmed Effect of growth temperature and catalyst on the formation of one-dimensional silicon nanostructures via thermal evaporation technique.
title_short Effect of growth temperature and catalyst on the formation of one-dimensional silicon nanostructures via thermal evaporation technique.
title_sort effect of growth temperature and catalyst on the formation of one-dimensional silicon nanostructures via thermal evaporation technique.
topic TN1-997 Mining engineering. Metallurgy
url http://eprints.usm.my/43106/
http://eprints.usm.my/43106/1/Pages_from_EFFECT_OF_GROWTH_TEMPERATURE_AND_CATALYST_ON.pdf