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Photoelectrocatalytic activity of silicon nanowires decorated with electroless copper nanoparticles and graphene oxide using a plasma jet for removal of methyl orange under visible light

Silicon nanowires (Si(NWs)) have been studied due to their interesting properties, such as light trapping and catalytic activity for removing organic molecules. In this work, silicon nanowires are decorated with copper (Si(NWs)-Cu(NPs)), graphene oxide (Si(NWs)-GO), and both copper and graphene oxid...

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Autores principales: Hernández Rodríguez, Carlos, Pérez Bueno, José de Jesús, Maldonado Pérez, Alejandra Xochitl, Ruiz Flores, Missael, Oza, Goldie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10069624/
https://www.ncbi.nlm.nih.gov/pubmed/37021106
http://dx.doi.org/10.1039/d3ra00932g
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author Hernández Rodríguez, Carlos
Pérez Bueno, José de Jesús
Maldonado Pérez, Alejandra Xochitl
Ruiz Flores, Missael
Oza, Goldie
author_facet Hernández Rodríguez, Carlos
Pérez Bueno, José de Jesús
Maldonado Pérez, Alejandra Xochitl
Ruiz Flores, Missael
Oza, Goldie
author_sort Hernández Rodríguez, Carlos
collection PubMed
description Silicon nanowires (Si(NWs)) have been studied due to their interesting properties, such as light trapping and catalytic activity for removing organic molecules. In this work, silicon nanowires are decorated with copper (Si(NWs)-Cu(NPs)), graphene oxide (Si(NWs)-GO), and both copper and graphene oxide GO (Si(NWs)-Cu(NPs)-GO). They were prepared and tested as photoelectrocatalysts to remove the azoic dye methyl orange (MO). The silicon nanowires were synthesized by the MACE process using HF/AgNO(3) solution. The decoration with copper nanoparticles was made by galvanic displacement reaction utilizing a copper sulfate/HF solution, while decoration with GO was achieved using an atmospheric pressure plasma jet system (APPJ). The as-produced nanostructures were then characterized by SEM, XRD, XPS, and Raman spectroscopy. Cu(i) oxide was generated during the decoration with copper. Cu(ii) oxide was produced when Si(NWs)–Cu(NPs) were exposed to the APPJ. GO was successfully attached on the surface of silicon nanowires and silicon nanowires decorated with copper nanoparticles. The photoelectrocatalytic activity of silicon nanostructures was tested under visible light, leading to an MO removal efficiency of 96% within 175 min with Si(NWs)–Cu(NPs)-GO, followed by Si(NWs)-Cu(NPs), Si(NWs)-GO, undecorated Si(NWs), and bulk silicon.
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spelling pubmed-100696242023-04-04 Photoelectrocatalytic activity of silicon nanowires decorated with electroless copper nanoparticles and graphene oxide using a plasma jet for removal of methyl orange under visible light Hernández Rodríguez, Carlos Pérez Bueno, José de Jesús Maldonado Pérez, Alejandra Xochitl Ruiz Flores, Missael Oza, Goldie RSC Adv Chemistry Silicon nanowires (Si(NWs)) have been studied due to their interesting properties, such as light trapping and catalytic activity for removing organic molecules. In this work, silicon nanowires are decorated with copper (Si(NWs)-Cu(NPs)), graphene oxide (Si(NWs)-GO), and both copper and graphene oxide GO (Si(NWs)-Cu(NPs)-GO). They were prepared and tested as photoelectrocatalysts to remove the azoic dye methyl orange (MO). The silicon nanowires were synthesized by the MACE process using HF/AgNO(3) solution. The decoration with copper nanoparticles was made by galvanic displacement reaction utilizing a copper sulfate/HF solution, while decoration with GO was achieved using an atmospheric pressure plasma jet system (APPJ). The as-produced nanostructures were then characterized by SEM, XRD, XPS, and Raman spectroscopy. Cu(i) oxide was generated during the decoration with copper. Cu(ii) oxide was produced when Si(NWs)–Cu(NPs) were exposed to the APPJ. GO was successfully attached on the surface of silicon nanowires and silicon nanowires decorated with copper nanoparticles. The photoelectrocatalytic activity of silicon nanostructures was tested under visible light, leading to an MO removal efficiency of 96% within 175 min with Si(NWs)–Cu(NPs)-GO, followed by Si(NWs)-Cu(NPs), Si(NWs)-GO, undecorated Si(NWs), and bulk silicon. The Royal Society of Chemistry 2023-04-03 /pmc/articles/PMC10069624/ /pubmed/37021106 http://dx.doi.org/10.1039/d3ra00932g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Hernández Rodríguez, Carlos
Pérez Bueno, José de Jesús
Maldonado Pérez, Alejandra Xochitl
Ruiz Flores, Missael
Oza, Goldie
Photoelectrocatalytic activity of silicon nanowires decorated with electroless copper nanoparticles and graphene oxide using a plasma jet for removal of methyl orange under visible light
title Photoelectrocatalytic activity of silicon nanowires decorated with electroless copper nanoparticles and graphene oxide using a plasma jet for removal of methyl orange under visible light
title_full Photoelectrocatalytic activity of silicon nanowires decorated with electroless copper nanoparticles and graphene oxide using a plasma jet for removal of methyl orange under visible light
title_fullStr Photoelectrocatalytic activity of silicon nanowires decorated with electroless copper nanoparticles and graphene oxide using a plasma jet for removal of methyl orange under visible light
title_full_unstemmed Photoelectrocatalytic activity of silicon nanowires decorated with electroless copper nanoparticles and graphene oxide using a plasma jet for removal of methyl orange under visible light
title_short Photoelectrocatalytic activity of silicon nanowires decorated with electroless copper nanoparticles and graphene oxide using a plasma jet for removal of methyl orange under visible light
title_sort photoelectrocatalytic activity of silicon nanowires decorated with electroless copper nanoparticles and graphene oxide using a plasma jet for removal of methyl orange under visible light
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10069624/
https://www.ncbi.nlm.nih.gov/pubmed/37021106
http://dx.doi.org/10.1039/d3ra00932g
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