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High Performance Solid Oxide Electrolysis Cells with Hierarchically Porous Ni-YSZ Electrode

机译:高性能固体氧化物电解电池,具有分层多孔Ni-YSZ电极

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In solid oxide electrolysis cells (SOECs), the microstructure of the fuel electrode (Ni-YSZ) has a great influence on the electrochemical performance of cells. In this study, novel hierarchical Ni-YSZ electrode with open channel pores has been fabricated by freeze-drying tape casting (FDTC). The microstructure of the Ni-YSZ electrode was characterized using SEM, mercury intrusion, 3D X-ray microscopy and gas permeability, showing that Ni-YSZ electrode fabricated by FDTC has large porosity and low tortuosity factor, which are beneficial for gas transport. SOECs with the Ni-YSZ electrode fabricated from FDTC display excellent performance (-0.95 A cm~(-2) with 1.3 V at 750°C) in the electrolysis mode, which is twice of that with the conventional sponge-like Ni-YSZ electrode fabricated from dry-pressing (DP). Furthermore, hierarchically porous Ni-YSZ electrode is more obvious in the electrolysis mode than the fuel cell mode, probably due to the slower diffusion of H_2O and CO_2 than H_2.
机译:在固体氧化物电解细胞(SOECS)中,燃料电极(Ni-YSZ)的微观结构对细胞的电化学性能有很大影响。在本研究中,通过冷冻干燥带铸造(FDTC)制造具有开放通道孔的新型分层Ni-YSZ电极。使用SEM,汞侵入,3D X射线显微镜和透气性表征了Ni-YSZ电极的微观结构,表明由FDTC制造的Ni-YSZ电极具有大的孔隙率和低曲折因子,这对气体运输有益。具有由FDTC制造的Ni-YSZ电极的SOEC,在电解模式下显示出优异的性能(-0.95Acm〜(-2),在电解模式下,具有传统的海绵状Ni-YSZ的两倍。由干压(DP)制造的电极。此外,分层多孔Ni-YSZ电极在电解模式中比燃料电池模式更明显,可能是由于H_2O和CO_2的较慢扩散而不是H_2。

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