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High performance anode-supported tubular solid oxide fuel cells fabricated by a novel slurry-casting method

机译:通过新型浆料铸造法制备的高性能阳极支撑管状固体氧化物燃料电池

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摘要

Tubular solid oxide fuel cells were fabricated and evaluated for their microstructure and electrochemical performance. The tubular substrate was prepared by casting NiO-Y2O3 stabilized ZrO2 (YSZ) slurry on the inner wall of a plastic mold (tube). The wall thickness and uniformity were controlled by slurry viscosity and rotation speed of the tube. The cells consisted of Ni-YSZ functional anode, YSZ electrolyte and (La0.8Sr0.2)0.95MnO3-δ (LSM)-YSZ cathode prepared in sequence on the substrate by dip-coating and sintering. Their dimension was 50 mm in length, 0.8 mm in thickness and 10.5 mm in outside diameter. The peak power density of the cell at temperatures between 650 and 850°C was in the range from 85 to 522 mW cm−2 and was greatly enhanced to the range from 308 to 1220 mW cm−2 by impregnating PdO into LSM-YSZ cathode. During a cell testing at 0.7 A cm−2 and 750°C for 282 h, the impregnated PdO particles grew by coalescence, which increased the cathode polarization resistance and so that decreased the cell performance. According to the degradation tendency, the cell performance will be stabilized in a longer run.
机译:制成管状固体氧化物燃料电池,并对其微观结构和电化学性能进行评估。通过将NiO-Y2O3稳定的ZrO2(YSZ)浆料浇铸在塑料模具(管)的内壁上来制备管状基板。壁的厚度和均匀度由浆料的粘度和管的转速控制。电池由Ni-YSZ功能性阳极,YSZ电解质和(La0.8Sr0.2)0.95MnO3-δ(LSM)-YSZ阴极组成,依次通过浸涂和烧结在基板上制备。它们的尺寸为长50 mm,厚度0.8 mm,外径10.5 mm。电池在650至850°C的温度下的峰值功率密度在85至522 mW cm -2 的范围内,并大大提高到308至1220 mW cm 的范围。通过将PdO浸渍到LSM-YSZ阴极中来实现−2 。在0.7 A cm −2 和750°C下进行282 h的电池测试期间,浸渍的PdO颗粒通过聚结生长,这增加了阴极极化电阻,从而降低了电池性能。根据退化趋势,电池性能将在更长的时间内稳定下来。

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