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Performance Analysis of SOFC with Electrode-electrolyte Interface Tailored by Laser Micro-machining

机译:激光微加工电极 - 电解质界面的SOFC性能分析

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The interfacial area between the electrode and the electrolyte of solid oxide fuel cells (SOFCs) is increased by a pulsed-laser machining to expand the active electrochemical reaction region. The pulsed-laser machining is performed on the surface of the YSZ flat electrolytes to fabricate micro-patterned craters. The surface profiles of the patterned electrolytes are measured by a 3D laser profiler. Then, LSM cathode is fabricated on the laser-machined surface of the YSZ electrolyte, while Ni-YSZ anode on the flat side. The performance of the fabricated cell with the patterned interface is experimentally evaluated at 900°C and compared with that of the conventional cell having the flat interface. 3D numerical simulations are also performed on the patterned cell to understand the distributions of the activation overpotentials and the charge-transfer current at the interface. A power density enhancement is confirmed in the cell with the patterned interface in both experiment and simulation.
机译:通过脉冲激光加工增加固体氧化物燃料电池(SOFC)的电极和电解质之间的界面区域以扩展活性电化学反应区域。脉冲激光加工在YSZ平电解质的表面上进行,以制造微图案的陨石坑。图案化电解质的表面轮廓由3D激光分析仪测量。然后,在YSZ电解质的激光加工表面上制造LSM阴极,而平面上的Ni-YSZ阳极。用图案化界面的制造电池的性能在900℃下通过实验评估,并与具有平界面的传统电池的相比。在图案化单元上还执行3D数值模拟,以了解界面处的激活过电位的分布和电荷传输电流。在实验和模拟中,在电池中确认了电力密度增强。

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