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A new A-site-deficient Ti-doped SrCoO3-δ perovskite cathode material for intermediate-temperature solid oxide fuel cells

机译:用于中温固体氧化物燃料电池的新型A现场缺陷的SRCOO3-δ钙钛矿正极材料

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To lower the operating temperatures of solid oxide fuel cells (SOFCs), A new A-site-deficient Ti-doped SrCoO3-δ (SCT) are synthesized by a modified Pechini method and used as new highly active and stable cathode materials for intermediate-temperature SOFCs. The phase structure and electrical, thermal, and electrochemical properties of the SCT samples are evaluated. A phase transformation of SrCoO3-δ from hexagonal to cubic perovskite structure occurred at room temperature by the substitution of Ti. A lower TEC value of the SCT oxide was observed with increasing the Ti doped content and A-site deficiency. NiO-SDC-supported single cells with various SCT as cathode materials were operated at intermediate temperatures using humidified H2 as fuel and the static air as oxidant, respectively. Significant improved electrochemical performance for the A-site-deficient SCT sample was observed. An open-circuit potential of 0.83 V and the max power density of 745 mW cm-2 were achieved at 650 °C . The experimental results indicated that the A-site-deficient Sr0.95Co0.9Ti0.1O3-6 cubic perovskites are promising candidates as cathode materials for IT-SOFCs.
机译:为了降低固体氧化物燃料电池(SOFC)的操作温度,通过改性的Pechini方法合成了新的A现场缺陷的Ti掺杂的SRCOO3-Δ(SCT),并用作中间的新的高活性和稳定的阴极材料 - 温度SOFC。评估SCT样品的相结构和电,热和电化学性质。通过替代Ti,在室温下发生从六边形到立方钙钛矿结构的SrCOO3-δ的相变。随着Ti掺杂含量和A现场缺乏的增加,观察到SCT氧化物的较低TEC值。使用作为阴极材料的NIO-SDC支持的单细胞,作为阴极材料在使用加湿的H2作为燃料和氧化剂的静空气在中间温度下操作。观察到显着改善的A现场缺陷SCT样品的电化学性能。在650℃下实现了0.83V的开路电位和745mW cm-2的最大功率密度。实验结果表明,缺陷的SR0.95CO0.9TI0.1O3-6立方钙钛矿是候选人作为IT-SOFC的阴极材料。

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