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Microstructure and electrochemical characterization of solid oxide fuel cells fabricated by co-tape casting
Authors:Xiaoliang Zhou  Kening Sun  Jie Gao  Naiqing Zhang  Peng Wang
Affiliation:a Science Research Center, Research Academy of Science and Technology, Harbin Institute of Technology, Harbin 150001, PR China
b School of Municipal and Environmental Engineering, Harbin Institute of Technology, Harbin 150090, PR China
c Department of Applied Chemistry, Harbin Institute of Technology, No. 92 of West Dazhi Street, PO Box 211, Harbin 150001, PR China
Abstract:A co-tape casting technique was applied to fabricate electrolyte/anode for solid oxide fuel cells. YSZ and NiO-YSZ powders are raw materials for electrolyte and anode, respectively. Through adjusting the Polyvinyl Butyral (PVB) amount in slurry, the co-sintering temperature for electrolyte/anode could be dropped. After being co-sintered at 1400 °C for 5 h, the half-cells with dense electrolytes and large three phase boundaries were obtained. The improved unit cell exhibited a maximum power density of 589 mW cm−2 at 800 °C. At the voltage of 0.7 V, the current densities of the cell reached 667 mA cm−2. When the electrolyte and the anode were cast within one step and sintered together at 1250 °C for 5 h and the thickness of electrolyte was controlled exactly at 20 μm, the open-circuit voltage (OCV) of the cell could reach 1.11 V at 800 °C and the maximum power densities were 739, 950 and 1222 mW cm−2 at 750, 800 and 850 °C, respectively, with H2 as the fuel under a flow rate of 50 sccm and the cathode exposed to the stationary air. Under the voltage of 0.7 V, the current densities of cell were 875, 1126 and 1501 mA cm−2, respectively. These are attributed to the large anode three phase boundaries and uniform electrolyte obtained under the lower sintering temperature. The electrochemical characteristics of the cells were investigated and discussed.
Keywords:SOFC   Yttria-stabilized zirconia (YSZ)   Tape casting   Thin films   EIS
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