Mechanism of ionic transport in cesium-conducting solid electrolytes based on cesium orthophosphate

The earlier obtained data on the transport properties of cesium-conducting solid electrolytes based on cesium orthophosphate in the Cs 3–2x M x II PO 4 (M II = Mg, Ca, Sr, Ba), Cs 3–3x PO 4 (M x III = Sc, Y, La, Sm, Nd) and Cs 3–x P 1–x Z x VI O 4 (Z = S, Cr, Mo, W) systems are analyzed. It is shown...

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Veröffentlicht in:Russian journal of electrochemistry 2016-08, Vol.52 (8), p.796-800
Hauptverfasser: Burmakin, E. I., Shekhtman, G. Sh
Format: Artikel
Sprache:eng
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Zusammenfassung:The earlier obtained data on the transport properties of cesium-conducting solid electrolytes based on cesium orthophosphate in the Cs 3–2x M x II PO 4 (M II = Mg, Ca, Sr, Ba), Cs 3–3x PO 4 (M x III = Sc, Y, La, Sm, Nd) and Cs 3–x P 1–x Z x VI O 4 (Z = S, Cr, Mo, W) systems are analyzed. It is shown that, in addition to the conventional jump mechanism, the “paddle wheel” mechanism can play an important role in the ionic transport. This mechanism is associated with the orientation disordering of [PO 4 ] tetrahedrons at the elevated temperatures, which leads to their rotation promoting “pushing” cesium ions into the accessible neighboring positions.
ISSN:1023-1935
1608-3342
DOI:10.1134/S1023193516080048