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Nanoparticles of Mixed-Valence Oxides Mn(X)CO(3-X)O(4) (0 ≤ X ≤ 1) Obtained with Agar-Agar from Red Algae (Rhodophyta) for Oxygen Evolution Reaction

The development of efficient electrocatalysts for the oxygen evolution reaction (OER) is of paramount importance in sustainable water-splitting technology for hydrogen production. In this context, this work reports mixed-valence oxide samples of the Mn(X)Co(3-X)O(4) type (0 ≤ X ≤ 1) synthesized for...

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Autores principales: Santos, Jakeline Raiane D., Raimundo, Rafael A., Silva, Thayse R., Silva, Vinícius D., Macedo, Daniel A., Loureiro, Francisco J. A., Torres, Marco A. M., Tonelli, Domenica, Gomes, Uílame U.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9506112/
https://www.ncbi.nlm.nih.gov/pubmed/36144958
http://dx.doi.org/10.3390/nano12183170
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author Santos, Jakeline Raiane D.
Raimundo, Rafael A.
Silva, Thayse R.
Silva, Vinícius D.
Macedo, Daniel A.
Loureiro, Francisco J. A.
Torres, Marco A. M.
Tonelli, Domenica
Gomes, Uílame U.
author_facet Santos, Jakeline Raiane D.
Raimundo, Rafael A.
Silva, Thayse R.
Silva, Vinícius D.
Macedo, Daniel A.
Loureiro, Francisco J. A.
Torres, Marco A. M.
Tonelli, Domenica
Gomes, Uílame U.
author_sort Santos, Jakeline Raiane D.
collection PubMed
description The development of efficient electrocatalysts for the oxygen evolution reaction (OER) is of paramount importance in sustainable water-splitting technology for hydrogen production. In this context, this work reports mixed-valence oxide samples of the Mn(X)Co(3-X)O(4) type (0 ≤ X ≤ 1) synthesized for the first time by the proteic sol-gel method using Agar-Agar as a polymerizing agent. The powders were calcined at 1173 K, characterized by FESEM, XRD, RAMAN, UV–Vis, FT-IR, VSM, and XPS analyses, and were investigated as electrocatalysts for the oxygen evolution reaction (OER). Through XRD analysis, it was observed that the pure cubic phase was obtained for all samples. The presence of Co(3+), Co(2+), Mn(2+), Mn(3+), and Mn(4+) was confirmed by X-ray spectroscopy (XPS). Regarding the magnetic measurements, a paramagnetic behavior at 300 K was observed for all samples. As far as OER is concerned, it was investigated in an alkaline medium, where the best overpotential of 299 mV vs. RHE was observed for the sample (MnCo(2)O(4)), which is a lower value than those of noble metal electrocatalysts in the literature, together with a Tafel slope of 52 mV dec(−1), and excellent electrochemical stability for 15 h. Therefore, the green synthesis method presented in this work showed great potential for obtaining electrocatalysts used in the oxygen evolution reaction for water splitting.
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spelling pubmed-95061122022-09-24 Nanoparticles of Mixed-Valence Oxides Mn(X)CO(3-X)O(4) (0 ≤ X ≤ 1) Obtained with Agar-Agar from Red Algae (Rhodophyta) for Oxygen Evolution Reaction Santos, Jakeline Raiane D. Raimundo, Rafael A. Silva, Thayse R. Silva, Vinícius D. Macedo, Daniel A. Loureiro, Francisco J. A. Torres, Marco A. M. Tonelli, Domenica Gomes, Uílame U. Nanomaterials (Basel) Article The development of efficient electrocatalysts for the oxygen evolution reaction (OER) is of paramount importance in sustainable water-splitting technology for hydrogen production. In this context, this work reports mixed-valence oxide samples of the Mn(X)Co(3-X)O(4) type (0 ≤ X ≤ 1) synthesized for the first time by the proteic sol-gel method using Agar-Agar as a polymerizing agent. The powders were calcined at 1173 K, characterized by FESEM, XRD, RAMAN, UV–Vis, FT-IR, VSM, and XPS analyses, and were investigated as electrocatalysts for the oxygen evolution reaction (OER). Through XRD analysis, it was observed that the pure cubic phase was obtained for all samples. The presence of Co(3+), Co(2+), Mn(2+), Mn(3+), and Mn(4+) was confirmed by X-ray spectroscopy (XPS). Regarding the magnetic measurements, a paramagnetic behavior at 300 K was observed for all samples. As far as OER is concerned, it was investigated in an alkaline medium, where the best overpotential of 299 mV vs. RHE was observed for the sample (MnCo(2)O(4)), which is a lower value than those of noble metal electrocatalysts in the literature, together with a Tafel slope of 52 mV dec(−1), and excellent electrochemical stability for 15 h. Therefore, the green synthesis method presented in this work showed great potential for obtaining electrocatalysts used in the oxygen evolution reaction for water splitting. MDPI 2022-09-13 /pmc/articles/PMC9506112/ /pubmed/36144958 http://dx.doi.org/10.3390/nano12183170 Text en © 2022 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
Santos, Jakeline Raiane D.
Raimundo, Rafael A.
Silva, Thayse R.
Silva, Vinícius D.
Macedo, Daniel A.
Loureiro, Francisco J. A.
Torres, Marco A. M.
Tonelli, Domenica
Gomes, Uílame U.
Nanoparticles of Mixed-Valence Oxides Mn(X)CO(3-X)O(4) (0 ≤ X ≤ 1) Obtained with Agar-Agar from Red Algae (Rhodophyta) for Oxygen Evolution Reaction
title Nanoparticles of Mixed-Valence Oxides Mn(X)CO(3-X)O(4) (0 ≤ X ≤ 1) Obtained with Agar-Agar from Red Algae (Rhodophyta) for Oxygen Evolution Reaction
title_full Nanoparticles of Mixed-Valence Oxides Mn(X)CO(3-X)O(4) (0 ≤ X ≤ 1) Obtained with Agar-Agar from Red Algae (Rhodophyta) for Oxygen Evolution Reaction
title_fullStr Nanoparticles of Mixed-Valence Oxides Mn(X)CO(3-X)O(4) (0 ≤ X ≤ 1) Obtained with Agar-Agar from Red Algae (Rhodophyta) for Oxygen Evolution Reaction
title_full_unstemmed Nanoparticles of Mixed-Valence Oxides Mn(X)CO(3-X)O(4) (0 ≤ X ≤ 1) Obtained with Agar-Agar from Red Algae (Rhodophyta) for Oxygen Evolution Reaction
title_short Nanoparticles of Mixed-Valence Oxides Mn(X)CO(3-X)O(4) (0 ≤ X ≤ 1) Obtained with Agar-Agar from Red Algae (Rhodophyta) for Oxygen Evolution Reaction
title_sort nanoparticles of mixed-valence oxides mn(x)co(3-x)o(4) (0 ≤ x ≤ 1) obtained with agar-agar from red algae (rhodophyta) for oxygen evolution reaction
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9506112/
https://www.ncbi.nlm.nih.gov/pubmed/36144958
http://dx.doi.org/10.3390/nano12183170
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