首页> 外文期刊>Journal of the European Ceramic Society >Optimization of laser-patterned YSZ-LSM composite cathode-electrolyte interfaces for solid oxide fuel cells
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Optimization of laser-patterned YSZ-LSM composite cathode-electrolyte interfaces for solid oxide fuel cells

机译:用于固体氧化物燃料电池的激光图案YSZ-LSM复合阴极电解质界面的优化

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Patterned cathode/electrolyte interfaces formed by a hexagonal array of similar to 22 mu m deep wells with 24 mu m lattice parameter have been prepared by pulsed laser machining to enlarge the contact surface and, consequently, to reduce the cathode polarization of Solid Oxide Fuel Cells. These new interfaces have been tested in YSZ-ISM/YSZ/YSZ-LSM symmetrical cells, where the cathode is deposited by dip-coating. Appropriate ceramic suspensions have been formulated to penetrate into deep wells without presenting interfacial delamination after sintering. We analyse their applicability by comparing their rheology with the microstructure and electrochemical performance of the cells. The activation component of the polarization resistance is reduced by similar to 50% using ethanol-based suspensions with 20 wt% solids loading, although the gas diffusion component increases due to excessive densification. Alternative ceramic suspensions with 17.5 wt% solids loading provide optimum electrode gas diffusion but lower activation components, resulting in an overall decrease of similar to 20% in polarization resistance.
机译:由六边形阵列形成的图案化阴极/电解质界面类似于22μm深井具有24μm晶格参数的脉冲激光加工制备,以扩大接触表面,并因此制备以降低固体氧化物燃料电池的阴极偏振。这些新的接口已经在YSZ-ISM / YSZ / YSZ-LSM对称电池中进行了测试,其中阴极通过浸涂沉积。已经配制了适当的陶瓷悬浮液,以渗透到深井中而不在烧结后呈现界面分层。我们通过将它们的流变学与细胞的微观结构和电化学性能进行比较来分析其适用性。尽管气体扩散组分由于过度致密化而增加,但偏振电阻的激活组分通过乙醇基悬浮液而减少到50%。具有17.5wt%固体负荷的替代陶瓷悬浮液提供最佳的电极气体扩散,但活化组分降低,导致偏振抗性的总体降低与20%相似。

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