Department of Energy Engineering, Ulsan National Institute of Science and Technology (UNIST), Ulsan, 689-798, Korea.
School of Chemistry, University of St Andrews, St Andrews KY16 9ST, UK.
Nat Mater. 2015 Feb;14(2):205-9. doi: 10.1038/nmat4166. Epub 2014 Dec 22.
Different layered perovskite-related oxides are known to exhibit important electronic, magnetic and electrochemical properties. Owing to their excellent mixed-ionic and electronic conductivity and fast oxygen kinetics, cation layered double perovskite oxides such as PrBaCo2O5 in particular have exhibited excellent properties as solid oxide fuel cell oxygen electrodes. Here, we show for the first time that related layered materials can be used as high-performance fuel electrodes. Good redox stability with tolerance to coking and sulphur contamination from hydrocarbon fuels is demonstrated for the layered perovskite anode PrBaMn2O5+δ (PBMO). The PBMO anode is fabricated by in situ annealing of Pr0.5Ba0.5MnO3-δ in fuel conditions and actual fuel cell operation is demonstrated. At 800 °C, layered PBMO shows high electrical conductivity of 8.16 S cm(-1) in 5% H2 and demonstrates peak power densities of 1.7 and 1.3 W cm(-2) at 850 °C using humidified hydrogen and propane fuels, respectively.
不同层状钙钛矿相关氧化物表现出重要的电子、磁和电化学性能。由于其具有优异的混合离子和电子导电性以及快速的氧动力学,特别是阳离子层状双钙钛矿氧化物如 PrBaCo2O5,已表现出作为固体氧化物燃料电池氧电极的优异性能。在这里,我们首次表明相关的层状材料可用作高性能的燃料电极。对于层状钙钛矿阳极 PrBaMn2O5+δ(PBMO),证明了其具有良好的氧化还原稳定性,能够耐受碳氢燃料的结焦和硫污染。通过在燃料条件下原位退火 Pr0.5Ba0.5MnO3-δ 来制备 PBMO 阳极,并进行了实际的燃料电池运行。在 800°C 下,层状 PBMO 在 5% H2 中表现出 8.16 S cm(-1)的高电导率,并分别在使用加湿氢气和丙烷燃料时在 850°C 下展示出 1.7 和 1.3 W cm(-2)的峰值功率密度。