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耐铬腐蚀的固体氧化物燃料电池阴极材料的结构设计及性能优化 被引量:2
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作者 区炳显 王勤生 +3 位作者 闫俊霞 杨永强 刘峥 陈辉 《化工新型材料》 CAS CSCD 北大核心 2022年第12期151-155,共5页
通过甘氨酸-EDTA-硝酸盐燃烧法(GNP)制备了La_(2)NiO_(4)-δ、La_(2)Ni_(0.9)Fe_(0.1)O_(4)-δ、La_(2)Ni_(0.8)Fe_(0.2)O_(4)-δ、La_(2)Ni_(0.6)Fe_(0.4)O_(4)-δ这4种阴极材料,分析其结构;测试阴极粉体与电解质粉体的化学相容性;测... 通过甘氨酸-EDTA-硝酸盐燃烧法(GNP)制备了La_(2)NiO_(4)-δ、La_(2)Ni_(0.9)Fe_(0.1)O_(4)-δ、La_(2)Ni_(0.8)Fe_(0.2)O_(4)-δ、La_(2)Ni_(0.6)Fe_(0.4)O_(4)-δ这4种阴极材料,分析其结构;测试阴极粉体与电解质粉体的化学相容性;测试阴极材料的抗铬中毒性能;采用直流四端子方法测定其电导率;测试热膨胀系数;最后测试了对称电池的极化电阻。通过对材料进行的上述研究和测试,对不同阴极材料的固体氧化物燃料电池的性能有了初步了解。结果表明:La_(2)NiO_(4)-δ为纯相,在La_(2)NiO_(4)-δ基础上掺杂Fe元素,当掺杂的Fe元素量逐渐增加,粉体结构逐渐改变,通过分析发现了新相四氧化三铁。4种阴极粉体与电解质都具有良好的化学相容性。随着Fe元素掺杂量的增加,抗铬中毒性能更加优越,电导率逐渐变低,极化阻抗增高。以期对以后固体氧化物燃料电池性能的研究创造更为便利的条件。 展开更多
关键词 固体氧化物燃料电池 阴极材料 热膨胀系数 抗铬中毒
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Enhanced Performance of La_(0.7)Sr_(0.3)FeO_(3-δ)Cathode for SOFC via Implementation of B-site High-entropy Strategy
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作者 LIU Hongming ZHANG Jinke +8 位作者 CHEN Zhengpeng LI Mingfei QIAN Xiuyang SUN Chuanqi XIONG Kai RAO Mumin CHEN Chuangting GAO Yuan LING Yihan 《无机材料学报》 2025年第12期1433-1442,I0019-I0020,共12页
As classical cathode materials of solid oxide fuel cell(SOFC),Fe-based perovskite materials are favored for their affordable price,low thermal expansion coefficient and high stability.In this study,B-site high-entropy... As classical cathode materials of solid oxide fuel cell(SOFC),Fe-based perovskite materials are favored for their affordable price,low thermal expansion coefficient and high stability.In this study,B-site high-entropy perovskite oxide La_(0.7)Sr_(0.3)(FeNiCo)_(0.8)Mo_(0.1)Ti_(0.1)O_(3-δ)(LSFNCMT)was prepared by the citric acid-nitrate combustion method.Due to the faster oxygen surface exchange rate of the high-entropy material,the LSFNCMT cathode shows excellent oxygen reduction reaction(ORR)activity with a polarization impedance(Rp)of 0.11Ω·cm^(2) at 800℃,which is much lower than that of the La_(0.7)Sr_(0.3)FeO_(3-δ)(LSF)cathode(0.31Ω·cm^(2)).Furthermore,the high-entropy material exhibits superior stability due to incorporation of highly acidic Ni,Co,and Mo cations as well as Ti cation with more negative average bonding energy(ABE)of metal-oxygen.In the 22 h-stability test of the symmetric cell with LSFNCMT cathode in the Cr-containing atmosphere,Rp only increases from 1.07Ω·cm^(2) to 2.98Ω·cm^(2),while Rp of the LSF cathode increases from 2.62Ω·cm^(2) to 7.90Ω·cm^(2) under the same conditions,indicating better Cr-resistance of LSFNCMT due to the high-entropy strategy.The fact that the maximum power density(MPD)of the single cell with LSFNCMT cathode at 800℃is 1105.26 mW·cm^(-2),significantly higher than that of LSF cathode(830.74 mW·cm^(-2)),and Rp at 800℃is 0.24Ω·cm^(2),lower than that of LSF cathode(0.36Ω·cm^(2)),confirming excellent toxicity resistance of the high-entropy cathode.This study shows that B-position high entropy is an effective way to improve the catalytic activity and chromium resistance of cathode materials. 展开更多
关键词 solid oxide fuel cell cathode material B-site high entropy anti-chromium poisoning
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