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Carbon dioxide and water incorporation mechanisms in SrFeO 3-δ phases: a computational study.

Authors :
Ford LJ
Slater PR
Christie JK
Goddard P
Source :
Physical chemistry chemical physics : PCCP [Phys Chem Chem Phys] 2020 Nov 21; Vol. 22 (43), pp. 25146-25155. Date of Electronic Publication: 2020 Oct 29.
Publication Year :
2020

Abstract

With a higher propensity for low temperature synthesis routes along with a move toward lower solid oxide fuel cell operating temperatures, water and carbon dioxide incorporation in strontium ferrite is of importance. Despite this, the mechanisms are not well understood. In this work, classical-potential-based computational techniques are used to determine the favourability of water and CO <subscript>2</subscript> incorporation mechanisms in both SrFeO <subscript>3-δ</subscript> and SrFeO <subscript>2.5</subscript> . Our studies suggest that intrinsic Frenkel and Schottky type defects are unlikely to form, but that water and carbon dioxide incorporation are favourable in both phases. Water incorporation is likely for both the cubic and brownmillerite phases, with hydroxyl ions preferring to sit on octahedral oxygen sites in both structures, causing slight tilting of the shared octahedra. Interstitial hydroxyl ions are only likely for the brownmillerite phase, where the hydroxyl ions are most stable between adjacent FeO <subscript>4</subscript> tetrahedral chains. Carbon dioxide incorporation via carbonate defects is most favourable when a carbonate molecule exists on an iron site, preferring the iron site with lower oxygen coordination. This involves formation of multiple oxygen vacancies surrounding the iron site, and thus we conclude that carbonate can trap oxygen vacancies.

Details

Language :
English
ISSN :
1463-9084
Volume :
22
Issue :
43
Database :
MEDLINE
Journal :
Physical chemistry chemical physics : PCCP
Publication Type :
Academic Journal
Accession number :
33119007
Full Text :
https://doi.org/10.1039/d0cp03537h