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Hardness and Elastic Modulus on Six-Fold Symmetry Gold Nanoparticles

The chemical synthesis of gold nanoparticles (NP) by using gold (III) chloride trihydrate (HAuCl∙3H(2)O) and sodium citrate as a reducing agent in aqueous conditions at 100 °C is presented here. Gold nanoparticles areformed by a galvanic replacement mechanism as described by Lee and Messiel. Morphol...

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Autores principales: Ramos, Manuel, Ortiz-Jordan, Luis, Hurtado-Macias, Abel, Flores, Sergio, Elizalde-Galindo, José T., Rocha, Carmen, Torres, Brenda, Zarei-Chaleshtori, Maryam, Chianelli, Russell R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5452105/
https://www.ncbi.nlm.nih.gov/pubmed/28809302
http://dx.doi.org/10.3390/ma6010198
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author Ramos, Manuel
Ortiz-Jordan, Luis
Hurtado-Macias, Abel
Flores, Sergio
Elizalde-Galindo, José T.
Rocha, Carmen
Torres, Brenda
Zarei-Chaleshtori, Maryam
Chianelli, Russell R.
author_facet Ramos, Manuel
Ortiz-Jordan, Luis
Hurtado-Macias, Abel
Flores, Sergio
Elizalde-Galindo, José T.
Rocha, Carmen
Torres, Brenda
Zarei-Chaleshtori, Maryam
Chianelli, Russell R.
author_sort Ramos, Manuel
collection PubMed
description The chemical synthesis of gold nanoparticles (NP) by using gold (III) chloride trihydrate (HAuCl∙3H(2)O) and sodium citrate as a reducing agent in aqueous conditions at 100 °C is presented here. Gold nanoparticles areformed by a galvanic replacement mechanism as described by Lee and Messiel. Morphology of gold-NP was analyzed by way of high-resolution transmission electron microscopy; results indicate a six-fold icosahedral symmetry with an average size distribution of 22 nm. In order to understand the mechanical behaviors, like hardness and elastic moduli, gold-NP were subjected to nanoindentation measurements—obtaining a hardness value of 1.72 GPa and elastic modulus of 100 GPa in a 3–5 nm of displacement at the nanoparticle’s surface.
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spelling pubmed-54521052017-07-28 Hardness and Elastic Modulus on Six-Fold Symmetry Gold Nanoparticles Ramos, Manuel Ortiz-Jordan, Luis Hurtado-Macias, Abel Flores, Sergio Elizalde-Galindo, José T. Rocha, Carmen Torres, Brenda Zarei-Chaleshtori, Maryam Chianelli, Russell R. Materials (Basel) Article The chemical synthesis of gold nanoparticles (NP) by using gold (III) chloride trihydrate (HAuCl∙3H(2)O) and sodium citrate as a reducing agent in aqueous conditions at 100 °C is presented here. Gold nanoparticles areformed by a galvanic replacement mechanism as described by Lee and Messiel. Morphology of gold-NP was analyzed by way of high-resolution transmission electron microscopy; results indicate a six-fold icosahedral symmetry with an average size distribution of 22 nm. In order to understand the mechanical behaviors, like hardness and elastic moduli, gold-NP were subjected to nanoindentation measurements—obtaining a hardness value of 1.72 GPa and elastic modulus of 100 GPa in a 3–5 nm of displacement at the nanoparticle’s surface. MDPI 2013-01-14 /pmc/articles/PMC5452105/ /pubmed/28809302 http://dx.doi.org/10.3390/ma6010198 Text en © 2013 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 license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Ramos, Manuel
Ortiz-Jordan, Luis
Hurtado-Macias, Abel
Flores, Sergio
Elizalde-Galindo, José T.
Rocha, Carmen
Torres, Brenda
Zarei-Chaleshtori, Maryam
Chianelli, Russell R.
Hardness and Elastic Modulus on Six-Fold Symmetry Gold Nanoparticles
title Hardness and Elastic Modulus on Six-Fold Symmetry Gold Nanoparticles
title_full Hardness and Elastic Modulus on Six-Fold Symmetry Gold Nanoparticles
title_fullStr Hardness and Elastic Modulus on Six-Fold Symmetry Gold Nanoparticles
title_full_unstemmed Hardness and Elastic Modulus on Six-Fold Symmetry Gold Nanoparticles
title_short Hardness and Elastic Modulus on Six-Fold Symmetry Gold Nanoparticles
title_sort hardness and elastic modulus on six-fold symmetry gold nanoparticles
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5452105/
https://www.ncbi.nlm.nih.gov/pubmed/28809302
http://dx.doi.org/10.3390/ma6010198
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