The role of pulse time T off on porous silicon as template for Au nanoparticles by using the integrated electrochemical technique

Gold nanoparticles (AuNPs) having variety of sizes and shape were prepared using the template synthesis approach. Porous silicon (PSi) was fabricated using the pulsed electrochemical anodization method at different pause times, Toff as template for gold deposition. Choosing suitable pulse parameter...

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Main Authors: Amran, T. S. T., Hashim, M. R., Ali, Nihad K., Yazid, H., Adnan, R.
Format: Article
Published: Elsevier 2012
Subjects:
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author Amran, T. S. T.
Hashim, M. R.
Ali, Nihad K.
Yazid, H.
Adnan, R.
author_facet Amran, T. S. T.
Hashim, M. R.
Ali, Nihad K.
Yazid, H.
Adnan, R.
author_sort Amran, T. S. T.
collection ePrints
description Gold nanoparticles (AuNPs) having variety of sizes and shape were prepared using the template synthesis approach. Porous silicon (PSi) was fabricated using the pulsed electrochemical anodization method at different pause times, Toff as template for gold deposition. Choosing suitable pulse parameter produces PSi with higher porosity and smaller crystallite size. SEM showed that the variation of Toff affects the pores formation and the growth of gold nanoparticles while EDX suggested the presence of Au inside the pores structure. Photoluminescence spectra showed emission enhancement and a blue shifted relative to porous silicon before deposited with AuNPs. XRD shows a high degree crystallinity of the samples and the presence of cubic gold with crystalline sizes was around 42 nm.
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spelling utm.eprints-338982018-11-30T06:41:22Z http://eprints.utm.my/33898/ The role of pulse time T off on porous silicon as template for Au nanoparticles by using the integrated electrochemical technique Amran, T. S. T. Hashim, M. R. Ali, Nihad K. Yazid, H. Adnan, R. TK Electrical engineering. Electronics Nuclear engineering Gold nanoparticles (AuNPs) having variety of sizes and shape were prepared using the template synthesis approach. Porous silicon (PSi) was fabricated using the pulsed electrochemical anodization method at different pause times, Toff as template for gold deposition. Choosing suitable pulse parameter produces PSi with higher porosity and smaller crystallite size. SEM showed that the variation of Toff affects the pores formation and the growth of gold nanoparticles while EDX suggested the presence of Au inside the pores structure. Photoluminescence spectra showed emission enhancement and a blue shifted relative to porous silicon before deposited with AuNPs. XRD shows a high degree crystallinity of the samples and the presence of cubic gold with crystalline sizes was around 42 nm. Elsevier 2012-12 Article PeerReviewed Amran, T. S. T. and Hashim, M. R. and Ali, Nihad K. and Yazid, H. and Adnan, R. (2012) The role of pulse time T off on porous silicon as template for Au nanoparticles by using the integrated electrochemical technique. Physica B: Condensed Matter, 407 (23). pp. 4540-4544. ISSN 0921-4526 http://dx.doi.org/10.1016/j.physb.2012.08.008 DOI:10.1016/j.physb.2012.08.008
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Amran, T. S. T.
Hashim, M. R.
Ali, Nihad K.
Yazid, H.
Adnan, R.
The role of pulse time T off on porous silicon as template for Au nanoparticles by using the integrated electrochemical technique
title The role of pulse time T off on porous silicon as template for Au nanoparticles by using the integrated electrochemical technique
title_full The role of pulse time T off on porous silicon as template for Au nanoparticles by using the integrated electrochemical technique
title_fullStr The role of pulse time T off on porous silicon as template for Au nanoparticles by using the integrated electrochemical technique
title_full_unstemmed The role of pulse time T off on porous silicon as template for Au nanoparticles by using the integrated electrochemical technique
title_short The role of pulse time T off on porous silicon as template for Au nanoparticles by using the integrated electrochemical technique
title_sort role of pulse time t off on porous silicon as template for au nanoparticles by using the integrated electrochemical technique
topic TK Electrical engineering. Electronics Nuclear engineering
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