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Artículo

Improvement on the electrochemical performance by morphology control of nanostructured La0.6Sr0.4CoO3-δ-Gd0.1Ce0.9O1.95cathodes for IT-SOFC

Acuña, Leandro MarceloIcon ; Cabezas, Marcelo DanielIcon ; Fuentes, Rodolfo OscarIcon
Fecha de publicación: 06/2022
Editorial: Royal Society of Chemistry
Revista: Energy Advances
ISSN: 2753-1457
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Físico-Química, Ciencia de los Polímeros, Electroquímica

Resumen

The effect of the particle's shape of Gd0.1Ce0.9O2-d (GDC) nanopowders on the electrochemical performance of La0.6Sr0.4CoO3-δ (LSC)-GDC composite cathodes was experimentally studied by electrochemical impedance spectroscopy (EIS). Composites were made of nanostructured LSC perovskite (average crystallite size D = 30 nm) mixed with nanostructured GDC powder (D = 8 nm) of irregular particle shape or with spherical particles of 200 nm diameter. Symmetrical cells (cathode/electrolyte/cathode) with different weight ratios of LSC:GDC (100: 0, 75 : 25, 50: 50 and 25 : 75 wt%) thick cathodes were fabricated by the screen-printing method and tested by EIS in the temperature range of 500-700 °C under a synthetic air flow of 100 mL min-1. These nanostructured composite materials exhibited excellent performance (area-specific resistance - ASR - values in the range of 0.019-0.032 Ω cm2 for an operating temperature of 700 °C). The best performance was achieved at a weight ratio of 75 : 25 wt% (LSC:GDC) when nanostructured GDC spheres were employed. This enhanced performance can be attributed to GDC morphology along with GDC anionic conduction, which prevent the blocking of LSC electrochemical reaction sites on surface, keeping them active by depleting its surface of adsorbed and reduced oxygen. The limiting processes were determined to take place on the LSC surface. New insight on cobalt's speciation under working-like conditions, determined by in situ X-ray Absorption Spectroscopy (XAS) experiments, suggests that the ease of cobalt atoms for changing their oxidation state is the key feature that rules the electrochemical activity of LSC and an atomistic model that explains it is proposed.
Palabras clave: Cathodes , SOFC , EIS , XAS
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info:eu-repo/semantics/openAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution-NonCommercial 2.5 Unported (CC BY-NC 2.5)
Identificadores
URI: http://hdl.handle.net/11336/216877
URL: https://pubs.rsc.org/en/content/articlelanding/2022/YA/D2YA00085G
DOI: https://doi.org/10.1039/d2ya00085g
Colecciones
Articulos (UE-INN - NODO CONSTITUYENTES)
Articulos de UNIDAD EJECUTORA INSTITUTO DE NANOCIENCIA Y NANOTECNOLOGIA - NODO CONSTITUYENTES
Articulos(UNIDEF)
Articulos de UNIDAD DE INVESTIGACION Y DESARROLLO ESTRATEGICOS PARA LA DEFENSA
Citación
Acuña, Leandro Marcelo; Cabezas, Marcelo Daniel; Fuentes, Rodolfo Oscar; Improvement on the electrochemical performance by morphology control of nanostructured La0.6Sr0.4CoO3-δ-Gd0.1Ce0.9O1.95cathodes for IT-SOFC; Royal Society of Chemistry; Energy Advances; 6; 6-2022; 344-356
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