Title of article :
Conductivity and water uptake of Sr4(Sr2Nb2)O11·nH2O and Sr4(Sr2Ta2)O11·nH2O
Author/Authors :
Jalarvo، نويسنده , , Niina and Haavik، نويسنده , , Camilla and Kongshaug، نويسنده , , Camilla and Norby، نويسنده , , Poul and Norby، نويسنده , , Truls، نويسنده ,
Issue Information :
هفته نامه با شماره پیاپی سال 2009
Pages :
6
From page :
1151
To page :
1156
Abstract :
The hydrated oxygen deficient complex perovskite-related materials Sr4(Sr2Nb2)O11·nH2O and Sr4(Sr2Ta2)O11·nH2O were studied at high water vapour pressures over a large temperature range by electrical conductivity measurements, thermogravimetry (TG), and X-ray powder diffraction (XRPD). In humid atmospheres both materials are known to exhibit protonic conductivity below dehydration temperatures, with peak-shaped maxima at about 500 °C. In this work we show that the peaks expand to plateaus of high conductivity from 500 to 700 °C at a water vapour pressure of 1 atm. However, in situ synchrotron XRPD of Sr4(Sr2Nb2)O11·nH2O as a function of temperature shows that these observations are in fact coincident with melting and dehydration of a secondary phase Sr(OH)2. The stability of Sr4(Sr2Nb2)O11·nH2O and Sr4(Sr2Ta2)O11·nH2O in humid atmospheres is thus insufficient, causing decomposition into perovskites with lower Sr content and SrO/Sr(OH)2 secondary phases. This, in turn, rationalizes the observation of peaks and plateaus in the conductivity of these materials.
Keywords :
Sr4(Sr2Nb2)O11·nH2O , Proton conductor , complex perovskite , Scanning electron microscopy , electrical conductivity , X-ray powder diffraction , Thermogravimetry , Sr4(Sr2Ta2)O11·nH2O
Journal title :
Solid State Ionics
Serial Year :
2009
Journal title :
Solid State Ionics
Record number :
1721454
Link To Document :
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