Title of article :
Nuclear microprobe local hydrogen measurements in HTPC
Author/Authors :
Berger، نويسنده , , P. and Gallien، نويسنده , , J.-P. and Khodja، نويسنده , , H. and Daudin، نويسنده , , L. and Berger، نويسنده , , M.-H. and Sayir، نويسنده , , A.، نويسنده ,
Issue Information :
هفته نامه با شماره پیاپی سال 2006
Pages :
4
From page :
1655
To page :
1658
Abstract :
High-temperature protonic conducting ceramics (HTPC) exhibit promising protonic conductivities at intermediate temperatures (400–600 °C), with a potential for a broad range of practical applications: electrolytes in electrochemical cells, batteries, sensors, etc. A balance still has to be found between high protonic conductivity and chemical stability in a wet environment. In addition to bulk conductivity measurements, local investigations of protonic transport are recommended to evidence limitations induced by their microstructure, such as the role of grain boundaries or intergranular secondary phases. Methods for local hydrogen concentration measurement with spatial resolution at the micrometer level are scarce. The nuclear microanalysis meets this demand. We report here the first application of a nuclear microprobe technique to the study of HTPC perovskites, synthesized according to a melt-process developed at NASA GRC. c Recoil Detection Analysis (ERDA) combined with Rutherford back-scattering (RBS) was first exploited for perovskites containing very low hydrogen contents. A less common method has been developed for thin samples which utilized 1H(p,p)1H forward scattering with coincidence detection (ERCS). From the broad compositional and structural range of perovskites, we have limited our efforts to SrCe0.9Y0.1O3−δ and Sr3Ca1+xNb1.82O9−δ, compositions which represent simple and complex perovskite structures, respectively.
Keywords :
Hydrogen , Forward scattering , Perovskite , Nuclear microprobe
Journal title :
Solid State Ionics
Serial Year :
2006
Journal title :
Solid State Ionics
Record number :
1719127
Link To Document :
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