Surface studies of the chemical environment in gold nanorods supported by X-ray photoelectron spectroscopy (XPS) and ab initio calculations

In this manuscript, we prepared gold nanorods (Au-NRs) through “silver-assisted seeded methodology” and studied their outermost layer using XPS spectroscopy and ab initio calculations to compare the chemical states of the constituents of the metallic core. Supporting first-principles calculations em...

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Main Authors: Camila Oliveira, Claudilene Ribeiro Chaves, Pascal Bargiela, Maria da Graça Carneiro da Rocha, Antonio Ferreira da Silva, José Fernando Diniz Chubaci, Mathias Boström, Clas Persson, Marcos Malta
Format: Article
Language:English
Published: Elsevier 2021-11-01
Series:Journal of Materials Research and Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S223878542100884X
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spelling doaj-31b7a51492a043f2a8c1b73982ecb3eb2021-08-30T04:13:37ZengElsevierJournal of Materials Research and Technology2238-78542021-11-0115768776Surface studies of the chemical environment in gold nanorods supported by X-ray photoelectron spectroscopy (XPS) and ab initio calculationsCamila Oliveira0Claudilene Ribeiro Chaves1Pascal Bargiela2Maria da Graça Carneiro da Rocha3Antonio Ferreira da Silva4José Fernando Diniz Chubaci5Mathias Boström6Clas Persson7Marcos Malta8Instituto de Química, Departamento de Físico-Química, Universidade Federal da Bahia, Campus Ondina, Salvador, BA, BrazilRede Multidisciplinar de Pesquisa, Ciência e Tecnologia, Universidade Federal de Uberlândia, Campus Patos de Minas, Patos de Minas, MG, BrazilInstituto de Química, Departamento de Físico-Química, Universidade Federal da Bahia, Campus Ondina, Salvador, BA, BrazilInstituto de Química, Departamento de Físico-Química, Universidade Federal da Bahia, Campus Ondina, Salvador, BA, BrazilInstituto de Física, Universidade de São Paulo, Laboratório de Cristais Iônicos, Filmes Finos e Datação, Butantã, São Paulo, SP, Brazil; Instituto de Física, Universidade Federal da Bahia, Campus Ondina, Salvador, BA, BrazilInstituto de Física, Universidade de São Paulo, Laboratório de Cristais Iônicos, Filmes Finos e Datação, Butantã, São Paulo, SP, BrazilCentre for Materials Science and Nanotechnology, Department of Physics, University of Oslo, NO-0316, Oslo, NorwayCentre for Materials Science and Nanotechnology, Department of Physics, University of Oslo, NO-0316, Oslo, Norway; Department of Materials Science and Engineering, KTH Royal Institute of Technology, Stockholm, SE, 100 44, Sweden; Corresponding author.Instituto de Química, Departamento de Físico-Química, Universidade Federal da Bahia, Campus Ondina, Salvador, BA, Brazil; Corresponding author.In this manuscript, we prepared gold nanorods (Au-NRs) through “silver-assisted seeded methodology” and studied their outermost layer using XPS spectroscopy and ab initio calculations to compare the chemical states of the constituents of the metallic core. Supporting first-principles calculations employing a relativistic, full-potential and all-electron method, with augmented plane waves plus local orbitals as a basis set, ensure proper treatment of the core electron states. Three significant findings can be reported. First, we found that besides Au (0), there are two chemical states for silver, namely Ag (0) and Ag(I), on the Au surface. Our results corroborate with recent results reported in the literature, indicating that Ag monolayer can be oxidized to Ag(I) during the steps of centrifugation and washing with diluted CTAB solution. Second, ab initio simulations showed that Ag atoms have different binding energies, depending on their configuration in Au-NRs (whether silver atoms are found on the surface or if they are spread in bulk as interstitial or substitutional defects). Third, theoretical studies showed that silver atoms located at interstitial sites could distort the crystalline structure, and, therefore, we do not expect interstitial Ag to occur in Au-NRs.http://www.sciencedirect.com/science/article/pii/S223878542100884XGold nanorodsX-ray photoelectron spectroscopy (XPS)nanoparticlesSimulationab initio
collection DOAJ
language English
format Article
sources DOAJ
author Camila Oliveira
Claudilene Ribeiro Chaves
Pascal Bargiela
Maria da Graça Carneiro da Rocha
Antonio Ferreira da Silva
José Fernando Diniz Chubaci
Mathias Boström
Clas Persson
Marcos Malta
spellingShingle Camila Oliveira
Claudilene Ribeiro Chaves
Pascal Bargiela
Maria da Graça Carneiro da Rocha
Antonio Ferreira da Silva
José Fernando Diniz Chubaci
Mathias Boström
Clas Persson
Marcos Malta
Surface studies of the chemical environment in gold nanorods supported by X-ray photoelectron spectroscopy (XPS) and ab initio calculations
Journal of Materials Research and Technology
Gold nanorods
X-ray photoelectron spectroscopy (XPS)
nanoparticles
Simulation
ab initio
author_facet Camila Oliveira
Claudilene Ribeiro Chaves
Pascal Bargiela
Maria da Graça Carneiro da Rocha
Antonio Ferreira da Silva
José Fernando Diniz Chubaci
Mathias Boström
Clas Persson
Marcos Malta
author_sort Camila Oliveira
title Surface studies of the chemical environment in gold nanorods supported by X-ray photoelectron spectroscopy (XPS) and ab initio calculations
title_short Surface studies of the chemical environment in gold nanorods supported by X-ray photoelectron spectroscopy (XPS) and ab initio calculations
title_full Surface studies of the chemical environment in gold nanorods supported by X-ray photoelectron spectroscopy (XPS) and ab initio calculations
title_fullStr Surface studies of the chemical environment in gold nanorods supported by X-ray photoelectron spectroscopy (XPS) and ab initio calculations
title_full_unstemmed Surface studies of the chemical environment in gold nanorods supported by X-ray photoelectron spectroscopy (XPS) and ab initio calculations
title_sort surface studies of the chemical environment in gold nanorods supported by x-ray photoelectron spectroscopy (xps) and ab initio calculations
publisher Elsevier
series Journal of Materials Research and Technology
issn 2238-7854
publishDate 2021-11-01
description In this manuscript, we prepared gold nanorods (Au-NRs) through “silver-assisted seeded methodology” and studied their outermost layer using XPS spectroscopy and ab initio calculations to compare the chemical states of the constituents of the metallic core. Supporting first-principles calculations employing a relativistic, full-potential and all-electron method, with augmented plane waves plus local orbitals as a basis set, ensure proper treatment of the core electron states. Three significant findings can be reported. First, we found that besides Au (0), there are two chemical states for silver, namely Ag (0) and Ag(I), on the Au surface. Our results corroborate with recent results reported in the literature, indicating that Ag monolayer can be oxidized to Ag(I) during the steps of centrifugation and washing with diluted CTAB solution. Second, ab initio simulations showed that Ag atoms have different binding energies, depending on their configuration in Au-NRs (whether silver atoms are found on the surface or if they are spread in bulk as interstitial or substitutional defects). Third, theoretical studies showed that silver atoms located at interstitial sites could distort the crystalline structure, and, therefore, we do not expect interstitial Ag to occur in Au-NRs.
topic Gold nanorods
X-ray photoelectron spectroscopy (XPS)
nanoparticles
Simulation
ab initio
url http://www.sciencedirect.com/science/article/pii/S223878542100884X
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