Influence of A-Site Deficiency and Ca Concentration on the Electrical and Crystallographic Properties of (Nd0.2Sr0.7–xCax)yTi0.95Fe0.05O3−δ-Based Fuel Electrode for Solid Oxide Cells

dc.contributor.authorPaydar, S.
dc.contributor.authorKooser, K.
dc.contributor.authorVolobujeva, O.
dc.contributor.authorGranroth, S.
dc.contributor.authorNurk, G.
dc.contributor.organizationfi=materiaalitutkimuksen laboratorio|en=Materials Research Laboratory|
dc.contributor.organization-code1.2.246.10.2458963.20.15561262450
dc.converis.publication-id457228064
dc.converis.urlhttps://research.utu.fi/converis/portal/Publication/457228064
dc.date.accessioned2025-08-28T01:41:59Z
dc.date.available2025-08-28T01:41:59Z
dc.description.abstractThis study explores the impact of A-site deficiency and Sr/Ca ratio on the electrochemical and crystallographic properties of a (Nd0.2Sr0.7–xCax)yTi0.95Fe0.05O3−δ hydrogen electrode for solid oxide cells under reducing and air atmospheres. 5\% and 10\% A-site deficient (Nd0.2Sr0.7–xCax)yTi0.95Fe0.05O3−δ (x = 0.35–0.45, y = 1.05, 1) (referred to as 5NSCTF-x and 10NSCTF-x) materials were studied, while the ratio between A-site cations was kept the same with both deficiencies. The results demonstrate that the extent of A-site deficiency and the Ca concentration in the A-site have a significant impact on the microstructure (sinterability), conductivity, and catalytic activity of electrodes. Segregation of Nd from the lattice with 5\% A-site deficiency was observed as a result of thermal treatment at low pO2. Among the studied materials, the highest total electrical conductivity of porous electrode layer at 850 °C and in 97\% H2 + 3\% H2O atmosphere was 4.8 S cm–1 observed for the Nd0.2Sr0.35Ca0.35Ti0.95Fe0.05O3−δ (10NSCTF-35). The highest electrochemical performance was observed in the case of Nd0.2Sr0.25Ca0.45Ti0.95Fe0.05O3−δ (10NSCTF-45), which showed a polarization resistance value equal to 0.19 Ω cm2 after 100 h of stabilization at 800 °C in a humidified (1.7\% H2O) H2 atmosphere. The best electrochemical performance with 606 mW cm–2 power density at 850 °C in 98.3\% H2 + 1.7\% H2O atmosphere was demonstrated by a 50 wt \% Nd0.2Sr0.25Ca0.45Ti0.95Fe0.05O3−δ + 50 wt \% Ce0.9Gd0.1O2−δ composite.
dc.format.pagerange5745
dc.format.pagerange5754
dc.identifier.eissn2574-0962
dc.identifier.jour-issn2574-0962
dc.identifier.olddbid207917
dc.identifier.oldhandle10024/190944
dc.identifier.urihttps://www.utupub.fi/handle/11111/57332
dc.identifier.urlhttps://doi.org/10.1021/acsaem.4c00824
dc.identifier.urnURN:NBN:fi-fe2025082787821
dc.language.isoen
dc.okm.affiliatedauthorGranroth, Sari
dc.okm.discipline216 Materials engineeringen_GB
dc.okm.discipline216 Materiaalitekniikkafi_FI
dc.okm.internationalcopublicationinternational co-publication
dc.okm.internationalityInternational publication
dc.okm.typeA1 ScientificArticle
dc.publisherAmerican Chemical Society
dc.publisher.countryUnited Statesen_GB
dc.publisher.countryYhdysvallat (USA)fi_FI
dc.publisher.country-codeUS
dc.relation.doi10.1021/acsaem.4c00824
dc.relation.ispartofjournalACS Applied Energy Materials
dc.relation.issue14
dc.relation.volume7
dc.source.identifierhttps://www.utupub.fi/handle/10024/190944
dc.titleInfluence of A-Site Deficiency and Ca Concentration on the Electrical and Crystallographic Properties of (Nd0.2Sr0.7–xCax)yTi0.95Fe0.05O3−δ-Based Fuel Electrode for Solid Oxide Cells
dc.year.issued2024

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