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Antimony-lead melts for high temperature electrochemical applications

Mikhalev, S. M.; Julião, Paulo S.B.; Loureiro, F. J.A.; Shaula, A. L.; Fagg, D. P.

The electrochemical behaviour of antimony-lead melt on saturation with oxygen was studied to assess further prospects of such melts as anode materials for high-temperature fuel cells. A perovskite ceramic was used as a robust current collector material. The related mechanisms of alloying and phase segregation were revealed at different melt oxidation levels using combined impedance spectroscopy and thermodynami...


Antimony-lead melts for high temperature electrochemical applications

Mikhalev, S. M.; Julião, Paulo S.B.; Loureiro, F. J.A.; Shaula, A. L.; Fagg, D. P.

The electrochemical behaviour of antimony-lead melt on saturation with oxygen was studied to assess further prospects of such melts as anode materials for high-temperature fuel cells. A perovskite ceramic was used as a robust current collector material. The related mechanisms of alloying and phase segregation were revealed at different melt oxidation levels using combined impedance spectroscopy and thermodynami...


Conductivity recovery by redox cycling of yttrium doped barium zirconate proton...

Nasani, N.; Pukazhselvan, D.; Kovalevsky, A. V.; Shaula, A. L.; Fagg, D. P.


Oxygen transport in La2NiO4 + [delta]: Assessment of surface limitations and mu...

Shaula, A. L.; Naumovich, E. N.; Viskup, A. P.; Pankov, V. V.; Kovalevsky, A. V.; Kharton, V. V.

http://www.sciencedirect.com/science/article/B6TY4-4VMBNT9-3/2/2c6a74f1bb2f51b7b9503333d1045f0d


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