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Study on Zinc Oxide-Based Electrolytes in Low-Temperature Solid Oxide Fuel Cells

机译:低温固体氧化物燃料电池中氧化锌基电解质的研究

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摘要

Semiconducting-ionic conductors have been recently described as excellent electrolyte membranes for low-temperature operation solid oxide fuel cells (LT-SOFCs). In the present work, two new functional materials based on zinc oxide (ZnO)—a legacy material in semiconductors but exceptionally novel to solid state ionics—are developed as membranes in SOFCs for the first time. The proposed ZnO and ZnO-LCP (La/Pr doped CeO2) electrolytes are respectively sandwiched between two Ni0.8Co0.15Al0.05Li-oxide (NCAL) electrodes to construct fuel cell devices. The assembled ZnO fuel cell demonstrates encouraging power outputs of 158–482 mW cm−2 and high open circuit voltages (OCVs) of 1–1.06 V at 450–550 °C, while the ZnO-LCP cell delivers significantly enhanced performance with maximum power density of 864 mW cm−2 and OCV of 1.07 V at 550 °C. The conductive properties of the materials are investigated. As a consequence, the ZnO electrolyte and ZnO-LCP composite exhibit extraordinary ionic conductivities of 0.09 and 0.156 S cm−1 at 550 °C, respectively, and the proton conductive behavior of ZnO is verified. Furthermore, performance enhancement of the ZnO-LCP cell is studied by electrochemical impedance spectroscopy (EIS), which is found to be as a result of the significantly reduced grain boundary and electrode polarization resistances. These findings indicate that ZnO is a highly promising alternative semiconducting-ionic membrane to replace the electrolyte materials for advanced LT-SOFCs, which in turn provides a new strategic pathway for the future development of electrolytes.
机译:近来,半导体离子导体已被描述为用于低温操作固体氧化物燃料电池(LT-SOFC)的优异电解质膜。在目前的工作中,首次开发了两种基于氧化锌(ZnO)的新功能材料(这是半导体中的传统材料,但对固态离子却异常新颖)作为SOFC中的膜。拟议的ZnO和ZnO-LCP(La / Pr掺杂的CeO2)电解质分别夹在两个Ni0.8Co0.15Al0.05Li-oxide(NCAL)电极之间,以构成燃料电池装置。组装好的ZnO燃料电池在450–550°C的温度下可显示158-482 mW cm −2 的令人鼓舞的功率输出和1-1.06 V的高开路电压(OCV),而ZnO-LCP电池550°C时最大功率密度为864 mW cm −2 ,OCV为1.07 V,可显着提高性能。研究了材料的导电性能。结果,ZnO电解质和ZnO-LCP复合材料在550℃下分别表现出0.09和0.156 S cm 的非凡的离子电导率,并且验证了ZnO的质子导电行为。此外,通过电化学阻抗谱(EIS)研究了ZnO-LCP电池的性能增强,这是由于晶界和电极极化电阻显着降低的结​​果。这些发现表明,ZnO是一种很有前途的替代性半导体离子膜,可以代替高级LT-SOFC的电解质材料,这反过来又为电解质的未来发展提供了新的战略途径。

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