Qu Yanmei, Yu Ji, Tian Ning, Shen Hai
College of Physics Science and Technology, Shenyang Normal University Shenyang 110034 China
RSC Adv. 2021 Sep 17;11(49):30911-30917. doi: 10.1039/d1ra04361g. eCollection 2021 Sep 14.
The ionic conductivity of the interlayer in the intermediate temperature solid oxide electrolysis cell (IT-SOEC) affects the polarization resistance of the oxygen electrode. Improving the ionic conductivity of the interlayer can improve the performance of the oxygen electrode. In this work, the ionic conductivity of a samarium-doped ceria (SDC) interlayer is improved by doping the transition metal oxide FeO. The experimental results show that the oxygen electrode polarization resistance of the symmetrical cell based on the SDC-FeO interlayer is 0.09 Ω cm at 800 °C and under the open circuit voltage, which is obviously lower than that of the symmetrical cell based on an SDC interlayer (0.22 Ω cm). Besides, the electrolysis current of the SOEC based on the SDC-FeO interlayer is 0.5 A cm at 800 °C and 1.5 V, which is higher than that of the SOEC based on the SDC interlayer (0.3 A cm). The above results show that improving the ionic conductivity of the SDC interlayer in the SOEC by doping FeO can reduce the polarization resistance of the oxygen electrode and enhance the performance of the SOEC. Thus, this work provides an effective way for improving the performance of the SDC interlayer in the IT-SOEC.
中温固体氧化物电解池(IT-SOEC)中间层的离子电导率会影响氧电极的极化电阻。提高中间层的离子电导率可改善氧电极的性能。在本工作中,通过掺杂过渡金属氧化物FeO来提高钐掺杂二氧化铈(SDC)中间层的离子电导率。实验结果表明,基于SDC-FeO中间层的对称电池在800℃和开路电压下的氧电极极化电阻为0.09Ω·cm,明显低于基于SDC中间层的对称电池(0.22Ω·cm)。此外,基于SDC-FeO中间层的SOEC在800℃和1.5V时的电解电流为0.5A/cm²,高于基于SDC中间层的SOEC(0.3A/cm²)。上述结果表明,通过掺杂FeO提高SOEC中SDC中间层的离子电导率可降低氧电极的极化电阻并提高SOEC的性能。因此,本工作为提高IT-SOEC中SDC中间层的性能提供了一种有效方法。