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Study on the Physico-Chemical Properties of the Si Nanowires Surface

Silicon nanowires (Si-NWs) have been extensively studied for their numerous applications in nano-electronics. The most common method for their synthesis is the vapor–liquid–solid growth, using gold as catalyst. After the growth, the metal remains on the Si-NW tip, representing an important issue, be...

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Autores principales: Puglisi, Rosaria A., Bongiorno, Corrado, Borgh, Giovanni, Fazio, Enza, Garozzo, Cristina, Mannino, Giovanni, Neri, Fortunato, Pellegrino, Giovanna, Scalese, Silvia, La Magna, Antonino
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6630687/
https://www.ncbi.nlm.nih.gov/pubmed/31151299
http://dx.doi.org/10.3390/nano9060818
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author Puglisi, Rosaria A.
Bongiorno, Corrado
Borgh, Giovanni
Fazio, Enza
Garozzo, Cristina
Mannino, Giovanni
Neri, Fortunato
Pellegrino, Giovanna
Scalese, Silvia
La Magna, Antonino
author_facet Puglisi, Rosaria A.
Bongiorno, Corrado
Borgh, Giovanni
Fazio, Enza
Garozzo, Cristina
Mannino, Giovanni
Neri, Fortunato
Pellegrino, Giovanna
Scalese, Silvia
La Magna, Antonino
author_sort Puglisi, Rosaria A.
collection PubMed
description Silicon nanowires (Si-NWs) have been extensively studied for their numerous applications in nano-electronics. The most common method for their synthesis is the vapor–liquid–solid growth, using gold as catalyst. After the growth, the metal remains on the Si-NW tip, representing an important issue, because Au creates deep traps in the Si band gap that deteriorate the device performance. The methods proposed so far to remove Au offer low efficiency, strongly oxidize the Si-NW sidewalls, or produce structural damage. A physical and chemical characterization of the as-grown Si-NWs is presented. A thin shell covering the Au tip and acting as a barrier is found. The chemical composition of this layer is investigated through high resolution transmission electron microscopy (TEM) coupled with chemical analysis; its formation mechanism is discussed in terms of atomic interdiffusion phenomena, driven by the heating/cooling processes taking place inside the eutectic-Si-NW system. Based on the knowledge acquired, a new efficient etching procedure is developed. The characterization after the chemical etching is also performed to monitor the removal process and the Si-NWs morphological characteristics, demonstrating the efficiency of the proposed method and the absence of modifications in the nanostructure.
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spelling pubmed-66306872019-08-19 Study on the Physico-Chemical Properties of the Si Nanowires Surface Puglisi, Rosaria A. Bongiorno, Corrado Borgh, Giovanni Fazio, Enza Garozzo, Cristina Mannino, Giovanni Neri, Fortunato Pellegrino, Giovanna Scalese, Silvia La Magna, Antonino Nanomaterials (Basel) Article Silicon nanowires (Si-NWs) have been extensively studied for their numerous applications in nano-electronics. The most common method for their synthesis is the vapor–liquid–solid growth, using gold as catalyst. After the growth, the metal remains on the Si-NW tip, representing an important issue, because Au creates deep traps in the Si band gap that deteriorate the device performance. The methods proposed so far to remove Au offer low efficiency, strongly oxidize the Si-NW sidewalls, or produce structural damage. A physical and chemical characterization of the as-grown Si-NWs is presented. A thin shell covering the Au tip and acting as a barrier is found. The chemical composition of this layer is investigated through high resolution transmission electron microscopy (TEM) coupled with chemical analysis; its formation mechanism is discussed in terms of atomic interdiffusion phenomena, driven by the heating/cooling processes taking place inside the eutectic-Si-NW system. Based on the knowledge acquired, a new efficient etching procedure is developed. The characterization after the chemical etching is also performed to monitor the removal process and the Si-NWs morphological characteristics, demonstrating the efficiency of the proposed method and the absence of modifications in the nanostructure. MDPI 2019-05-30 /pmc/articles/PMC6630687/ /pubmed/31151299 http://dx.doi.org/10.3390/nano9060818 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Puglisi, Rosaria A.
Bongiorno, Corrado
Borgh, Giovanni
Fazio, Enza
Garozzo, Cristina
Mannino, Giovanni
Neri, Fortunato
Pellegrino, Giovanna
Scalese, Silvia
La Magna, Antonino
Study on the Physico-Chemical Properties of the Si Nanowires Surface
title Study on the Physico-Chemical Properties of the Si Nanowires Surface
title_full Study on the Physico-Chemical Properties of the Si Nanowires Surface
title_fullStr Study on the Physico-Chemical Properties of the Si Nanowires Surface
title_full_unstemmed Study on the Physico-Chemical Properties of the Si Nanowires Surface
title_short Study on the Physico-Chemical Properties of the Si Nanowires Surface
title_sort study on the physico-chemical properties of the si nanowires surface
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6630687/
https://www.ncbi.nlm.nih.gov/pubmed/31151299
http://dx.doi.org/10.3390/nano9060818
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