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Projekt Druckansicht

Texturierte La2NiO4+δ-Membran mit verbesserter Sauerstoffpermeabilität

Fachliche Zuordnung Physikalische Chemie von Festkörpern und Oberflächen, Materialcharakterisierung
Herstellung und Eigenschaften von Funktionsmaterialien
Förderung Förderung von 2020 bis 2024
Projektkennung Deutsche Forschungsgemeinschaft (DFG) - Projektnummer 435833397
 
Erstellungsjahr 2024

Zusammenfassung der Projektergebnisse

We have successfully produced textured ceramic membranes employing the Ruddlesden- Popper-phases La2NiO4+δ and Nd2NiO4+δ. The texturing process involved the utilization of plate-like particles derived from the molten-flux synthesis, nanorods synthesized via reverse microemulsion, and the application of magnetic fields. The incorporation of La2NiO4+δ plates from molten flux synthesis in the preparation of the textured membranes resulted in a reduction in oxygen permeation. This outcome stemmed from the unfavorable orientation of the platelike crystals to the oxygen permeation direction. The particles were aligned along the c-axis by the pressing force during pressing. Texturing along the a,b-plane remains a challenge. It requires larger sintered bodies, which can be made accessible by other advanced sintering techniques, such as spark-plasma sintering. Both the utilization of reverse microemulsion-synthesized La2NiO4+δ nanorods and the magnetic alignment of Nd2NiO4+δ grains led to an improvement in the oxygen permeation fluxes. Additionally, the texturing achieved through magnetic fields in Nd2NiO4+δ proved effective in preparing both asymmetric and bulk symmetric ceramic membranes. Because of the enhanced oxygen permeation performance facilitated by texturing, materials like La2NiO4+δ, and Nd2NiO4+δ represent promising candidates for electrocatalysis and the development of improved solid oxide electrochemical cells (e.g. fuel cells or electrolyzers).

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