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作 者:苏晓刚 宋昭远[1] 张磊磊[1] SU Xiaogang;SONG Zhaoyuan;ZHANG Leilei(College of Science,Liaoning Petrochemical University,Fushun Liaoning 113001,China)
机构地区:[1]辽宁石油化工大学理学院,辽宁抚顺113001
出 处:《辽宁石油化工大学学报》2024年第1期29-34,共6页Journal of Liaoning Petrochemical University
基 金:辽宁省“兴辽英才计划”青年拔尖人才项目(XLYC1807179)。
摘 要:通过改变Ba_(2)FeMoO_(6)-δ(BFM)中Fe与Mo的物质的量比调控双钙钛矿晶格B位有序性,制备了一种高性能新型SOFC双钙钛矿阳极材料Ba_(2)Fe_(1.3)Mo_(0.7)O_(6-δ)(BFM_(0.7))。结果表明,BFM0.7在H2中600~800℃的电导率为15.0~20.0 S/cm,远高于SOFC电极的最低标准(0.1 S/cm)。BFM0.7用作SOFC阳极时,单电池在850℃的最大功率密度和极化阻抗分别为1 149 mW/cm^(2)和0.15Ω·cm^(2)。相比于BFM阳极,BFM0.7的性能显著提高。此外,BFM0.7阳极电池连续工作39 h性能无衰减,表明BFM0.7阳极具有优异的电化学稳定性。The Fe/Mo ordering at B-sites of Ba_(2)Fe_(1.3)Mo_(0.7)O_(6-δ)(BFM)were changed by adjusting Fe/Mo amount of substance ratio(i.e.,stoichiometric ratio),and then a new double-perovskite anode material Ba_(2)Fe_(1.3)Mo_(0.7)O_(6-δ)(BFM_(0.7))for SOFC were obtained.The results indicated that the electrical conductivity of the BFM0.7 anode is 15.0~20.0 S/cm at 600~800℃in H2,which is much larger than that of the lowest target for SOFC electrode(0.1 S/cm).The peak power density and polarization resistance of the BFM0.7 anode cell attained 1149 mW/cm^(2) and 0.15Ω·cm^(2) at 850℃.Compared with BFM anode,the performance of BFM0.7 is significantly improved.In addition,the performance of BFM0.7 anode cell showed no degradation after testing for 39 h,indicating that the BFM0.7 anode possesses has excellent electrochemical stability.
分 类 号:TQ15[化学工程—电化学工业]
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