Anode-Supported IT-SOFC anode Prepared by Tape Casting Technique
Jiangrong Kong, Kening Sun, Derui Zhou, Jinshuo Qiao, Jigang Li
Abstract
Jiangrong Kong, Kening Sun, Derui Zhou, Jinshuo Qiao, Jigang Li
Abstract
This paper used composite multi-layer tape casting technique successfully in fabricating Ni-YSZ/YSZ anode/ electrolyte composite ceramic of planar intermediate-temperature solid oxide fuel cell (IT-SOFC). The anode was designed as a double-layer structure, which consisted of an anode substrate and an anode functional layer. This design optimized anode microstructure and improved its performances. This design made anode match electrolyte well during the co-sintering process. The anode conductivity was higher than 1000 S-cm-1at 800degC. The TEC of the composite ceramic was 12.1times10-6 K-1, which matched those of inter connector and sealant. When NiO content of functional layer was 50 mass%, the current density was about 80 mA-cm-2at an overpotential of 0.1 V. EIS measurement showed that anodic catalytic activity and interfacial resistances were main factors affecting electrode performance. Unit cells were assembled and tested after above performances were measured.
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This paper used composite multi-layer tape casting technique successfully in fabricating Ni-YSZ/YSZ anode/ electrolyte composite ceramic of planar intermediate-temperature solid oxide fuel cell (IT-SOFC). The anode was designed as a double-layer structure, which consisted of an anode substrate and an anode functional layer. This design optimized anode microstructure and improved its performances. This design made anode match electrolyte well during the co-sintering process. The anode conductivity was higher than 1000 S-cm-1at 800degC. The TEC of the composite ceramic was 12.1times10-6 K-1, which matched those of inter connector and sealant. When NiO content of functional layer was 50 mass%, the current density was about 80 mA-cm-2at an overpotential of 0.1 V. EIS measurement showed that anodic catalytic activity and interfacial resistances were main factors affecting electrode performance. Unit cells were assembled and tested after above performances were measured.
Key concepts: Anode, Tape casting, Materials science, Electrolyte, Composite number, Solid oxide fuel cell, Chemical engineering, Ceramic