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The best cell performance was observed at 20 mM H2SeO3.
The best cell performance was achieved with PTFE/carbon weight ratio of 0.9 over the entire range of operating temperatures.
The best cell performance was investigated when the NSDC-NCAL membrane was optimized at a weight ratio of 6 4.
The best cell performance was achieved using a cobalt-plated nickel anode at a temperature of 400 °C and a steam partial pressure of 8.7 MPa.
The best cell performance was obtained for coplanar NiO YSZ anodes combined with LSM YSZ cathodes, whereas the NiO GDC//YSZ//LSCF cell delivered the lowest power output.
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At high current densities the best fuel cell performance was found for the electrode with 0.35 mg Nafion cm−2 (15 wt.%), while at low current densities the cell performance is better for higher Nafion contents.
The ability to grow and differentiate on stiff or more compliant materials was cell type-dependent, but cell performance was consistently best on stiff and smooth materials.
The experiments also indicate that the cell orientation had a significant effect on the cell performance, especially at low methanol flow rates; for the present flow field design the best cell performance could be achieved when the cell was orientated vertically.
The operating temperature effect on the cell performance is studied and the operating temperature for the best performance is verified.
The best cell performance obtained in this study is by using nc-Si as a buffer layer since it provides better optical transmission and electrical conductivity suitable for the solar cell performance.
The salt concentrations were optimized independently for best cell performance in each case.
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