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Sintering Aid Strategy for Promoting Oxygen Reduction Reaction on High-Performance Double-Layer LaNi(0.6)Fe(0.4)O(3–δ) Composite Electrode for Devices Based on Solid-State Membranes

Strontium and cobalt-free LaNi(0.6)Fe(0.4)O(3–δ) is considered one of the most promising electrodes for solid-state electrochemical devices. LaNi(0.6)Fe(0.4)O(3–δ) has high electrical conductivity, a suitable thermal expansion coefficient, satisfactory tolerance to chromium poisoning, and chemical c...

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Autores principales: Osinkin, Denis, Bogdanovich, Nina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10302646/
https://www.ncbi.nlm.nih.gov/pubmed/37367807
http://dx.doi.org/10.3390/membranes13060603
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author Osinkin, Denis
Bogdanovich, Nina
author_facet Osinkin, Denis
Bogdanovich, Nina
author_sort Osinkin, Denis
collection PubMed
description Strontium and cobalt-free LaNi(0.6)Fe(0.4)O(3–δ) is considered one of the most promising electrodes for solid-state electrochemical devices. LaNi(0.6)Fe(0.4)O(3–δ) has high electrical conductivity, a suitable thermal expansion coefficient, satisfactory tolerance to chromium poisoning, and chemical compatibility with zirconia-based electrolytes. The disadvantage of LaNi(0.6)Fe(0.4)O(3–δ) is its low oxygen-ion conductivity. In order to increase the oxygen-ion conductivity, a complex oxide based on a doped ceria is added to the LaNi(0.6)Fe(0.4)O(3–δ). However, this leads to a decrease in the conductivity of the electrode. In this case, a two-layer electrode with a functional composite layer and a collector layer with the addition of sintering additives should be used. In this study, the effect of sintering additives (Bi(0.75)Y(0.25)O(2–δ) and CuO) in the collector layer on the performance of LaNi(0.6)Fe(0.4)O(3–δ)-based highly active electrodes in contact with the most common solid-state membranes (Zr(0.84)Sc(0.16)O(2–δ), Ce(0.8)Sm(0.2)O(2–δ), La(0.85)Sr(0.15)Ga(0.85)Mg(0.15)O(3–δ), La(10)(SiO(4))(6)O(3–δ), and BaCe(0.89)Gd(0.1)Cu(0.01)O(3–δ)) was investigated. It was shown that LaNi(0.6)Fe(0.4)O(3–δ) has good chemical compatibility with the abovementioned membranes. The best electrochemical activity (polarization resistance about 0.02 Ohm cm(2) at 800 °C) was obtained for the electrode with 5 wt.% Bi(0.75)Y(0.25)O(1.5) and 2 wt.% CuO in the collector layer.
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spelling pubmed-103026462023-06-29 Sintering Aid Strategy for Promoting Oxygen Reduction Reaction on High-Performance Double-Layer LaNi(0.6)Fe(0.4)O(3–δ) Composite Electrode for Devices Based on Solid-State Membranes Osinkin, Denis Bogdanovich, Nina Membranes (Basel) Article Strontium and cobalt-free LaNi(0.6)Fe(0.4)O(3–δ) is considered one of the most promising electrodes for solid-state electrochemical devices. LaNi(0.6)Fe(0.4)O(3–δ) has high electrical conductivity, a suitable thermal expansion coefficient, satisfactory tolerance to chromium poisoning, and chemical compatibility with zirconia-based electrolytes. The disadvantage of LaNi(0.6)Fe(0.4)O(3–δ) is its low oxygen-ion conductivity. In order to increase the oxygen-ion conductivity, a complex oxide based on a doped ceria is added to the LaNi(0.6)Fe(0.4)O(3–δ). However, this leads to a decrease in the conductivity of the electrode. In this case, a two-layer electrode with a functional composite layer and a collector layer with the addition of sintering additives should be used. In this study, the effect of sintering additives (Bi(0.75)Y(0.25)O(2–δ) and CuO) in the collector layer on the performance of LaNi(0.6)Fe(0.4)O(3–δ)-based highly active electrodes in contact with the most common solid-state membranes (Zr(0.84)Sc(0.16)O(2–δ), Ce(0.8)Sm(0.2)O(2–δ), La(0.85)Sr(0.15)Ga(0.85)Mg(0.15)O(3–δ), La(10)(SiO(4))(6)O(3–δ), and BaCe(0.89)Gd(0.1)Cu(0.01)O(3–δ)) was investigated. It was shown that LaNi(0.6)Fe(0.4)O(3–δ) has good chemical compatibility with the abovementioned membranes. The best electrochemical activity (polarization resistance about 0.02 Ohm cm(2) at 800 °C) was obtained for the electrode with 5 wt.% Bi(0.75)Y(0.25)O(1.5) and 2 wt.% CuO in the collector layer. MDPI 2023-06-15 /pmc/articles/PMC10302646/ /pubmed/37367807 http://dx.doi.org/10.3390/membranes13060603 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
Osinkin, Denis
Bogdanovich, Nina
Sintering Aid Strategy for Promoting Oxygen Reduction Reaction on High-Performance Double-Layer LaNi(0.6)Fe(0.4)O(3–δ) Composite Electrode for Devices Based on Solid-State Membranes
title Sintering Aid Strategy for Promoting Oxygen Reduction Reaction on High-Performance Double-Layer LaNi(0.6)Fe(0.4)O(3–δ) Composite Electrode for Devices Based on Solid-State Membranes
title_full Sintering Aid Strategy for Promoting Oxygen Reduction Reaction on High-Performance Double-Layer LaNi(0.6)Fe(0.4)O(3–δ) Composite Electrode for Devices Based on Solid-State Membranes
title_fullStr Sintering Aid Strategy for Promoting Oxygen Reduction Reaction on High-Performance Double-Layer LaNi(0.6)Fe(0.4)O(3–δ) Composite Electrode for Devices Based on Solid-State Membranes
title_full_unstemmed Sintering Aid Strategy for Promoting Oxygen Reduction Reaction on High-Performance Double-Layer LaNi(0.6)Fe(0.4)O(3–δ) Composite Electrode for Devices Based on Solid-State Membranes
title_short Sintering Aid Strategy for Promoting Oxygen Reduction Reaction on High-Performance Double-Layer LaNi(0.6)Fe(0.4)O(3–δ) Composite Electrode for Devices Based on Solid-State Membranes
title_sort sintering aid strategy for promoting oxygen reduction reaction on high-performance double-layer lani(0.6)fe(0.4)o(3–δ) composite electrode for devices based on solid-state membranes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10302646/
https://www.ncbi.nlm.nih.gov/pubmed/37367807
http://dx.doi.org/10.3390/membranes13060603
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