Effect of cation substitution at the B site on the oxygen semi-permeation flux in La sub(0.5)Ba sub(0.5)Fe sub(0.7)B sub(0.3)O sub(3-[delta]) dense perovskite membranes with B = Al, Co, Cu, Mg, Mn, Ni, Sn, Ti and Zn (part II)

The aim of this paper is to provide insight into the effect of cation substitution at the B site on the oxygen semi-permeation performances. Particular attention is given here to identify the impact of cation substitution at the B site on oxygen diffusion and oxygen surface-exchange kinetics in the...

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Veröffentlicht in:Journal of power sources 2015-03, Vol.277, p.17-25
Hauptverfasser: Reichmann, M, Geffroy, P-M, Fouletier, J, Richet, N, Del Gallo, P, Chartier, T
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Sprache:eng
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Zusammenfassung:The aim of this paper is to provide insight into the effect of cation substitution at the B site on the oxygen semi-permeation performances. Particular attention is given here to identify the impact of cation substitution at the B site on oxygen diffusion and oxygen surface-exchange kinetics in the La sub(0.5)Ba sub(0.5)Fe sub(0.7)B sub(0.3)O sub(3-[delta]) perovskite membrane series with B = Al, Co, Cu, Mg, Mn, Ni, Sn, Ti and Zn. This study clearly shows that the prediction of the oxygen semi-permeation performances of membrane materials from the nature of cation at the A or B sites in perovskite structure is quite complex. The cation substitution at the B-site has a low impact on the nature of rate-determining step and a significant impact on oxygen semi-permeation performances, contrary to the cation substitution at A-site. Unfortunately, it is not possible to establish a relevant trend about the effect of the nature of cation in the A or B sites in perovskite structure on oxygen diffusion and the oxygen surface-exchange kinetics.
ISSN:0378-7753
DOI:10.1016/j.jpowsour.2014.12.012