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Synthesis and Catalytic Activity for 2, 3, and 4-Nitrophenol Reduction of Green Catalysts Based on Cu, Ag and Au Nanoparticles Deposited on Polydopamine-Magnetite Porous Supports

This work reports on the synthesis of nine materials containing Cu, Ag, Au, and Ag/Cu nanoparticles (NPs) deposited on magnetite particles coated with polydopamine (PDA). Ag NPs were deposited on two PDA@Fe(3)O(4) supports differing in the thickness of the PDA film. The film thickness was adjusted t...

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Autores principales: Brown, Helen K., El Haskouri, Jamal, Marcos, María D., Ros-Lis, José Vicente, Amorós, Pedro, Úbeda Picot, M. Ángeles, Pérez-Pla, Francisco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10421209/
https://www.ncbi.nlm.nih.gov/pubmed/37570480
http://dx.doi.org/10.3390/nano13152162
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author Brown, Helen K.
El Haskouri, Jamal
Marcos, María D.
Ros-Lis, José Vicente
Amorós, Pedro
Úbeda Picot, M. Ángeles
Pérez-Pla, Francisco
author_facet Brown, Helen K.
El Haskouri, Jamal
Marcos, María D.
Ros-Lis, José Vicente
Amorós, Pedro
Úbeda Picot, M. Ángeles
Pérez-Pla, Francisco
author_sort Brown, Helen K.
collection PubMed
description This work reports on the synthesis of nine materials containing Cu, Ag, Au, and Ag/Cu nanoparticles (NPs) deposited on magnetite particles coated with polydopamine (PDA). Ag NPs were deposited on two PDA@Fe(3)O(4) supports differing in the thickness of the PDA film. The film thickness was adjusted to impart a textural porosity to the material. During synthesis, Ag(I) was reduced with ascorbic acid (HA), photochemically, or with NaBH(4), whereas Au(III), with HA, with the PDA cathecol groups, or NaBH(4). For the material characterization, TGA, XRD, SEM, EDX, TEM, STEM-HAADF, and DLS were used. The catalytic activity towards reduction of 4-, 3- and 2-nitrophenol was tested and correlated with the synthesis method, film thickness, metal particle size and NO(2) group position. An evaluation of the recyclability of the materials was carried out. In general, the catalysts prepared by using soft reducing agents and/or thin PDA films were the most active, while the materials reduced with NaBH(4) remained unchanged longer in the reactor. The activity varied in the direction Au > Ag > Cu. However, the Ag-based materials showed a higher recyclability than those based on gold. It is worth noting that the Cu-containing catalyst, the most environmentally friendly, was as active as the best Ag-based catalyst.
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spelling pubmed-104212092023-08-12 Synthesis and Catalytic Activity for 2, 3, and 4-Nitrophenol Reduction of Green Catalysts Based on Cu, Ag and Au Nanoparticles Deposited on Polydopamine-Magnetite Porous Supports Brown, Helen K. El Haskouri, Jamal Marcos, María D. Ros-Lis, José Vicente Amorós, Pedro Úbeda Picot, M. Ángeles Pérez-Pla, Francisco Nanomaterials (Basel) Article This work reports on the synthesis of nine materials containing Cu, Ag, Au, and Ag/Cu nanoparticles (NPs) deposited on magnetite particles coated with polydopamine (PDA). Ag NPs were deposited on two PDA@Fe(3)O(4) supports differing in the thickness of the PDA film. The film thickness was adjusted to impart a textural porosity to the material. During synthesis, Ag(I) was reduced with ascorbic acid (HA), photochemically, or with NaBH(4), whereas Au(III), with HA, with the PDA cathecol groups, or NaBH(4). For the material characterization, TGA, XRD, SEM, EDX, TEM, STEM-HAADF, and DLS were used. The catalytic activity towards reduction of 4-, 3- and 2-nitrophenol was tested and correlated with the synthesis method, film thickness, metal particle size and NO(2) group position. An evaluation of the recyclability of the materials was carried out. In general, the catalysts prepared by using soft reducing agents and/or thin PDA films were the most active, while the materials reduced with NaBH(4) remained unchanged longer in the reactor. The activity varied in the direction Au > Ag > Cu. However, the Ag-based materials showed a higher recyclability than those based on gold. It is worth noting that the Cu-containing catalyst, the most environmentally friendly, was as active as the best Ag-based catalyst. MDPI 2023-07-25 /pmc/articles/PMC10421209/ /pubmed/37570480 http://dx.doi.org/10.3390/nano13152162 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Brown, Helen K.
El Haskouri, Jamal
Marcos, María D.
Ros-Lis, José Vicente
Amorós, Pedro
Úbeda Picot, M. Ángeles
Pérez-Pla, Francisco
Synthesis and Catalytic Activity for 2, 3, and 4-Nitrophenol Reduction of Green Catalysts Based on Cu, Ag and Au Nanoparticles Deposited on Polydopamine-Magnetite Porous Supports
title Synthesis and Catalytic Activity for 2, 3, and 4-Nitrophenol Reduction of Green Catalysts Based on Cu, Ag and Au Nanoparticles Deposited on Polydopamine-Magnetite Porous Supports
title_full Synthesis and Catalytic Activity for 2, 3, and 4-Nitrophenol Reduction of Green Catalysts Based on Cu, Ag and Au Nanoparticles Deposited on Polydopamine-Magnetite Porous Supports
title_fullStr Synthesis and Catalytic Activity for 2, 3, and 4-Nitrophenol Reduction of Green Catalysts Based on Cu, Ag and Au Nanoparticles Deposited on Polydopamine-Magnetite Porous Supports
title_full_unstemmed Synthesis and Catalytic Activity for 2, 3, and 4-Nitrophenol Reduction of Green Catalysts Based on Cu, Ag and Au Nanoparticles Deposited on Polydopamine-Magnetite Porous Supports
title_short Synthesis and Catalytic Activity for 2, 3, and 4-Nitrophenol Reduction of Green Catalysts Based on Cu, Ag and Au Nanoparticles Deposited on Polydopamine-Magnetite Porous Supports
title_sort synthesis and catalytic activity for 2, 3, and 4-nitrophenol reduction of green catalysts based on cu, ag and au nanoparticles deposited on polydopamine-magnetite porous supports
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10421209/
https://www.ncbi.nlm.nih.gov/pubmed/37570480
http://dx.doi.org/10.3390/nano13152162
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