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- W2099692417 abstract "Abstract NH 4 PO 3 –(NH 4 ) 2 SiP 4 O 13 composite, a potential electrolyte for intermediate temperature fuel cells that operated around 250 °C, was synthesized with a solid-state reaction method. Electromotive forces (emfs) as measured with hydrogen concentration cells showed that the composite was a pure proton conductor at hydrogen partial pressure from 10 2 to 10 5 Pa. Its proton transference numbers were determined to be 1.0 at 150 °C, 0.99 at 200 °C, and 0.99 at 250 °C. Fuel cells that used NH 4 PO 3 –(NH 4 ) 2 SiP 4 O 13 as electrolytes were also fabricated. Maximum power density was 6.6 mW/cm 2 at 250 °C when dry hydrogen and dry oxygen were used as the fuel and oxidant, respectively. Improved cell performance is expected by increasing cathode activity, increasing the electrolyte density, and decreasing the electrolyte thickness." @default.
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- W2099692417 date "2006-10-01" @default.
- W2099692417 modified "2023-09-24" @default.
- W2099692417 title "Fabrication and characterization of solid state proton conductor (NH4)2SiP4O13–NH4PO3 for fuel cells operated at 150–250 °C" @default.
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- W2099692417 doi "https://doi.org/10.1016/j.ssi.2006.03.045" @default.
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