Evaluation of the hydrogen solubility and diffusivity in proton-conducting oxides by converting the PSL values of a tritium imaging plate
M. Khalid Hossain, K. Hashizume, Y. Hatano

TL;DR
This study measures hydrogen solubility and diffusivity in proton-conducting oxides using tritium imaging plates, revealing differences among materials and highlighting barium zirconates as more effective proton conductors.
Contribution
It introduces a novel method of converting PSL values from tritium imaging plates to assess hydrogen behavior in oxides, providing new insights into material properties.
Findings
BZY shows the most uniform tritium distribution.
T diffuses deeper into BZY and BZYC than CZI.
Barium zirconates are more favorable proton conductors.
Abstract
Proton-conducting oxides have potential applications in hydrogen sensors, hydrogen pumps, and other electrochemical devices including the tritium purification and recovery systems of nuclear fusion reactors. Although the distribution of hydrogen (H) in such oxide materials is an important aspect, its precise measurement is difficult. In the present study, the hydrogen solubility and diffusivity behavior of BaZr0.9Y0.1O2.95 (BZY), BaZr0.955Y0.03Co0.015O2.97 (BZYC), and CaZr0.9In0.1O2.95 (CZI) were studied using tritiated heavy water vapor i.e., DTO (~2 kPa, tritium (T) = 0.1%) by converting the photostimulated luminescence (PSL) values of the imaging plate (IP). The samples were exposed to DTO vapor at 673 K for 2 h or at 873 K for 1 h. The disc-shaped oxide specimens (diameter ~7.5 mm; thickness ~2.3 mm; theoretical density (TD) > 98 %) were prepared by conventional powder metallurgy.…
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