Please use this identifier to cite or link to this item:
http://elar.urfu.ru/handle/10995/142332
Title: | Ln2NiO4+δ-based Oxygen Electrodes for Proton-Conducting Sr0.98Zr0.95Yb0.05O3–δ Electrolyte for Application in IT-SOFCs |
Authors: | Meshcherskikh, A. N. Khaliullina, A. Sh. Pikalova, E. Yu. Dunyushkina, L. A. |
Issue Date: | 2025 |
Publisher: | Уральский федеральный университет Ural Federal University |
Citation: | Ln2NiO4+δ-based Oxygen Electrodes for Proton-Conducting Sr0.98Zr0.95Yb0.05O3–δ Electrolyte for Application in IT-SOFCs / A. Meshcherskikh, A. Khaliullina, E. Pikalova, L. Dunyushkina // Electrochemical Materials and Technologies. — 2025. — Vol. 4. № 1. — № 20254047. |
Abstract: | Layered lanthanide nickelates Ln2NiO4+δ are considered as potential cathode materials in solid oxide fuel cells. In this study, the chemical stability, thermal expansion and electrical conductivity of a number of layered nickelates, namely Lа2NiO4+δ, Pr1.7Sr0.3NiO4+δ, Pr1.7Ca0.3NiO4+δ and Nd1.9Ca0.1NiO4+δ, are investigated. Based on the chemical stability, thermal expansion and electrical conductivity studies, the composite material consisting of Pr1.7Ca0.3NiO4+δ and Sr0.98Zr0.95Yb0.05O3–δ oxides (PCN-SZYb) was selected as a suitable oxygen electrode for the proton-conducting Sr0.98Zr0.95Yb0.05O3–δ electrolyte. The electrochemical behavior of the electrolyte-supported cells with the symmetrical porous PCN-SZYb electrodes was investigated in air with different humidities in the temperature range of 350–800 °C. The impregnation of a porous electrode backbone with the praseodymium nitrate solution enhanced the activity of the electrodes by approximately 3 times. The electrochemical behavior of the composite electrode in contact with the Sr0.98Zr0.95Yb0.05O3–δ electrolyte is consistent with the literature data on the Ln2NiO4+δ-based electrodes and related proton-conducting electrolytes. |
Keywords: | LAYERED NICKELATES PROTON-CONDUCTING ELECTROLYTE SOFC POLARIZATION RESISTANCE ELECTROCHEMICAL ACTIVITY PRASEODYMIUM NITRATE IMPREGNATION |
URI: | http://elar.urfu.ru/handle/10995/142332 |
RSCI ID: | https://elibrary.ru/item.asp?id=80540693 |
ISSN: | 2949-0561 |
DOI: | 10.15826/elmattech.2025.4.047 |
Sponsorship: | This work was prepared within the framework of the budgetary plans of the Institute of High Temperature Electrochemistry (IHTE) with the facilities of the IHTE Shared Access Centre “Composition of Compounds”. |
Origin: | Electrochemical Materials and Technologies. 2025. Vol. 4. № 1 |
Appears in Collections: | Electrochemical Materials and Technologies |
Files in This Item:
File | Description | Size | Format | |
---|---|---|---|---|
emt_2025_v4_1_01.pdf | 1,1 MB | Adobe PDF | View/Open |
Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.