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REBaCo2O5+δ (RE = Pr, Nd, and Gd) as promising oxygen electrodes for intermediate-temperature solid oxide electrolysis cells

机译:REBaCo 2 O 5+ δ (RE = Pr,Nd和Gd)作为有望用于中温固体氧化物电解池的氧电极

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Double-perovskite REBaCo2O5+δ (RE = Pr, Nd, and Gd) oxides were synthesized and evaluated as oxygen electrodes for intermediate-temperature solid oxide electrolysis cells (IT-SOECs). The crystal structures, thermal stability properties, electrical conductivities, and electrochemical performances of the REBaCo2O5+δ materials were investigated systematically. Among the three oxides, PrBaCo2O5+δ (PBCO) has the highest electrical conductivity of 645 S cm?1 at 600 °C. The electrical conductivity decreases as the ionic radius of the RE decreases, which is related to the increase in oxygen vacancy concentration. NdBaCo2O5+δ (NBCO) has the lowest polarization resistance of 0.95 Ω cm2 among the three oxides at 650 °C, which is mainly because NBCO has a better balance between thermal expansion compatibility and conductivity than PBCO and GdBaCo2O5+δ (GBCO). For electrochemical performance in SOECs, NBCO has the smallest current/voltage loss; at a voltage of 1.2 V, the power density of NBCO is 1.58 W cm?2 at 800 °C. Even at 700 °C, a maximum power density of 0.857 W cm?2 can still be achieved by NBCO. These results suggest that NBCO is a novel and promising candidate oxygen electrode material for IT-SOECs.
机译:双钙钛矿REBaCo 2 O 5+ δ (RE = Pr,Nd合成了Gd)和Gd)氧化物作为中温固体氧化物电解槽(IT-SOEC)的氧电极。 REBaCo 2 O 5+ δ <的晶体结构,热稳定性能,电导率和电化学性能/ sub> 材料进行了系统的研究。在这三种氧化物中,PrBaCo 2 O 5+ δ (PBCO)具有600°C时的最高电导率为645 S cm ?1 。随着RE的离子半径减小,电导率减小,这与氧空位浓度的增加有关。 NdBaCo 2 O 5+ δ (NBCO)的极化电阻最低三种氧化物在650°C时为0.95Ωcm 2 ,这主要是因为NBCO的热膨胀相容性和电导率之间的平衡优于PBCO和GdBaCo < sub> 2 O 5+ δ (GBCO)。对于SOEC的电化学性能,NBCO具有最小的电流/电压损耗;在1.2 V电压下,NBCO的功率密度在800°C下为1.58 W cm ?2 。即使在700°C,NBCO仍可达到0.857 W cm ?2 的最大功率密度。这些结果表明,NBCO是用于IT-SOEC的一种新颖且有希望的候选氧电极材料。

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