Title of article
Effect of anode configuration on electrical properties and cell polarization in planar anode supported SOFC
Author/Authors
Mukhopadhyay، نويسنده , , Madhumita and Mukhopadhyay، نويسنده , , Jayanta and Das Sharma، نويسنده , , Abhijit and Basu، نويسنده , , Rajendra N.، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 2013
Pages
12
From page
20
To page
31
Abstract
A detailed investigation is carried out to correlate configurational variation of SOFC anode with electrical characterizations. For this purpose, Ni-YSZ cermet anode (28–32 vol.% Ni) having a novel core-shell microstructure (prepared by electroless technique) has been used in conjunction with conventional cermet (40 vol.% Ni). Depending upon the thickness, electroless cermet is used in two configurations, viz. (i) as layered anode and (ii) as anode active layers (AAL). Thicknesses of electroless layer are varied sequentially for both these configurations for inducing functionality in the cermet. Layered anode with 140 μm electroless layer (32 vol.% Ni) shows maximum electrical conductivity (644 Scm− 1) with only 7% degradation after 20 redox cycles at 800 °C. A theoretical approach is attempted to explain the overall cell polarization behavior and to quantify the polarization components. Single cells fabricated with electroless AAL show lowest polarization (~ 0.3 Ω.cm2) with minimum contribution of charge transfer and concentration polarization. As a result, single cell having such a thin (~ 15 μm) AAL, exhibits the highest electrochemical performance (~ 3.7 A.cm− 2) with significant low degradation rate (2.8% 1000 h− 1) at 800 °C, 0.7 V.
Keywords
Electroless anode , electrical conductivity , Redox cycling , Electrochemical performance , Endurance test , Cell polarization
Journal title
Solid State Ionics
Serial Year
2013
Journal title
Solid State Ionics
Record number
1712166
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