Growth of ZnO nanosturctures on porous silicon in different concentration of Zn2+ ion
In this work, zinc nitrate was used as starting materials while hexamethylenetetramine as stabilizier and deionized water as a solvent. Electrochemical etching method was employed to modify p-type silicon wafer surface in substrate preparation. ZnO nanostructures were simply deposited on substrate b...
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2-s2.0-84891612985 Eswar K.A.; Husairi F.S.; Ab Aziz A.; Rusop M.; Abdullah S. Growth of ZnO nanosturctures on porous silicon in different concentration of Zn2+ ion 2014 Advanced Materials Research 832 10.4028/www.scientific.net/AMR.832.691 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84891612985&doi=10.4028%2fwww.scientific.net%2fAMR.832.691&partnerID=40&md5=657c2a836a4712a2799a4684b6e97789 In this work, zinc nitrate was used as starting materials while hexamethylenetetramine as stabilizier and deionized water as a solvent. Electrochemical etching method was employed to modify p-type silicon wafer surface in substrate preparation. ZnO nanostructures were simply deposited on substrate by sol-gel immersion method. Different molarities of precursor were prepared to study the effect of Zn2+ ion concentration in growth of ZnO nanostructures. Field Emission Scanning Electron Microscopic (FESEM) revealed that concentration of Zn2+ ion precursor influences the growth of ZnO nanostructures. ZnO nano-flower was formed in low molarity and becomes nano-spherical composed by nanorods in high molarity. X-Ray diffraction (XRD) spectroscopy was employed to analyse the structural properties. The result was confirming the formation of hexagonal wurtzite of ZnO nanostructures. Besides, the growth of ZnO nanostructures was aligned to (002) towards higher molarity. © (2014) Trans Tech Publications, Switzerland. 10226680 English Conference paper |
author |
Eswar K.A.; Husairi F.S.; Ab Aziz A.; Rusop M.; Abdullah S. |
spellingShingle |
Eswar K.A.; Husairi F.S.; Ab Aziz A.; Rusop M.; Abdullah S. Growth of ZnO nanosturctures on porous silicon in different concentration of Zn2+ ion |
author_facet |
Eswar K.A.; Husairi F.S.; Ab Aziz A.; Rusop M.; Abdullah S. |
author_sort |
Eswar K.A.; Husairi F.S.; Ab Aziz A.; Rusop M.; Abdullah S. |
title |
Growth of ZnO nanosturctures on porous silicon in different concentration of Zn2+ ion |
title_short |
Growth of ZnO nanosturctures on porous silicon in different concentration of Zn2+ ion |
title_full |
Growth of ZnO nanosturctures on porous silicon in different concentration of Zn2+ ion |
title_fullStr |
Growth of ZnO nanosturctures on porous silicon in different concentration of Zn2+ ion |
title_full_unstemmed |
Growth of ZnO nanosturctures on porous silicon in different concentration of Zn2+ ion |
title_sort |
Growth of ZnO nanosturctures on porous silicon in different concentration of Zn2+ ion |
publishDate |
2014 |
container_title |
Advanced Materials Research |
container_volume |
832 |
container_issue |
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doi_str_mv |
10.4028/www.scientific.net/AMR.832.691 |
url |
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84891612985&doi=10.4028%2fwww.scientific.net%2fAMR.832.691&partnerID=40&md5=657c2a836a4712a2799a4684b6e97789 |
description |
In this work, zinc nitrate was used as starting materials while hexamethylenetetramine as stabilizier and deionized water as a solvent. Electrochemical etching method was employed to modify p-type silicon wafer surface in substrate preparation. ZnO nanostructures were simply deposited on substrate by sol-gel immersion method. Different molarities of precursor were prepared to study the effect of Zn2+ ion concentration in growth of ZnO nanostructures. Field Emission Scanning Electron Microscopic (FESEM) revealed that concentration of Zn2+ ion precursor influences the growth of ZnO nanostructures. ZnO nano-flower was formed in low molarity and becomes nano-spherical composed by nanorods in high molarity. X-Ray diffraction (XRD) spectroscopy was employed to analyse the structural properties. The result was confirming the formation of hexagonal wurtzite of ZnO nanostructures. Besides, the growth of ZnO nanostructures was aligned to (002) towards higher molarity. © (2014) Trans Tech Publications, Switzerland. |
publisher |
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issn |
10226680 |
language |
English |
format |
Conference paper |
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record_format |
scopus |
collection |
Scopus |
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1809677609378775040 |