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The power density in Pr2NiO4-based anode supported button cells was in the range between 0.65 and 0.7 W/cm2 at 750 °C at the external load of 0.8 V.
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The button cells are 1.5 V and cover the capacity range 18-300 mA h.
Electrolyte supported button cells were used with a Ni-GDC (gadolinia doped ceria) anode with 15 wt% YSZ (yttria stabilised zirconia) for thermal stability and better adhesion with the YSZ electrolyte.
Symmetric button cells were fabricated by depositing the NiO/CGO suspension ink on to the surface of the CGO pellets.
In this study, a planar solid oxide fuel cells (SOFCs) apparatus with a 6 cm × 6 cm anode supported single cell based on a modified button cell was designed for operation in both regular cell and button cell configurations.
The asymmetrical Co3O4//AC button cell is also tested by two-electrode system with a large potential testing window of 1.5 V and the results show the high energy density with a value of 42.81 Wh kg−1 at the discharge current of 1.5 A g−1.
Primarily alkaline batteries, carbon zinc batteries and alkaline button cell batteries were found to be discarded with the residual household waste.
At first, button cell configurations were investigated.
As a result, initially, small button cell batteries were tried.
Performance of the button (2 × 2) cell was studied by current voltage power (I V P) characteristic and impedance measurement (at OCV) using Impedance analyser (solatron 1260 gain/phase analyser) coupled with potentiostat (Solatron 1287).
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