首站-论文投稿智能助手
典型文献
Enhanced cathodic activity by tantalum inclusion at B-site of La0.6Sr0.4Co0.4Fe0.6O3 based on structural property tailored via camphor-assisted solid-state reaction
文献摘要:
Lanthanum strontium cobalt ferrite(LSCF)is an appreciable cathode material for solid oxide fuel cells(SOFCs),and it has been widely investigated,owing to its excellent thermal and chemical stability.However,its poor oxygen reduction reaction(ORR)activity,particularly at a temperature of≤800℃,causes setbacks in achieving a peak power density of>1.0 W·cm-2,limiting its application in the commercialization of SOFCs.To improve the ORR of LSCF,doping strategies have been found useful.Herein,the porous tantalum-doped LSCF materials(La0.6Sr0.4Co0.4Fe0.57Ta0.03O3(LSCFT-0),La0.6Sr0.4Co0.4Fe0.54Ta0.06O3,and La0.6Sr0.4Co0.4Fe0.5Ta0.1O3)are prepared via camphor-assisted solid-state reaction(CSSR).The LSCFT-0 material exhibits promising ORR with area-specific resistance(ASR)of 1.260,0.580,0.260,0.100,and 0.06 Q·cm2 at 600,650,700,750,and 800℃,respectively.The performance is about 2 times higher than that of undoped La0.6Sr0.4Co0.4Fe0.6O3 with the ASR of 2.515,1.191,0.596,0.320,and 0.181 Ω·cm2 from the lowest to the highest temperature.Through material characterization,it was found that the incorporated Ta occupied the B-site of the material,leading to the enhancement of the ORR activity.With the use of LSCFT-0 as the cathode material for anode-supported single-cell,the power density of>1.0 W·cm-2 was obtained at a temperature<800℃.The results indicate that the CSSR-derived LSCFT is a promising cathode material for SOFCs.
文献关键词:
作者姓名:
Dingyu XIONG;Sefiu Abolaji RASAKI;Yangpu LI;Liangdong FAN;Changyong LIU;Zhangwei CHEN
作者机构:
Additive Manufacturing Institute,Shenzhen University,Shenzhen 518060,China;Department of Chemical and Petroleum Engineering,University of Calgary,Calgary T2N1N4,Canada;College of Chemistry and Environmental Engineering,Shenzhen University,Shenzhen 518060,China;Guangdong Key Laboratory of Electromagnetic Control and Intelligent Robotics,Shenzhen University,Shenzhen 518060,China
引用格式:
[1]Dingyu XIONG;Sefiu Abolaji RASAKI;Yangpu LI;Liangdong FAN;Changyong LIU;Zhangwei CHEN-.Enhanced cathodic activity by tantalum inclusion at B-site of La0.6Sr0.4Co0.4Fe0.6O3 based on structural property tailored via camphor-assisted solid-state reaction)[J].先进陶瓷(英文版),2022(08):1330-1342
A类:
57Ta0,03O3,LSCFT,54Ta0,5Ta0,CSSR
B类:
Enhanced,cathodic,activity,by,tantalum,inclusion,site,La0,6Sr0,4Co0,4Fe0,structural,property,tailored,via,camphor,assisted,solid,state,reaction,Lanthanum,strontium,cobalt,ferrite,appreciable,cathode,oxide,fuel,cells,SOFCs,has,been,widely,investigated,owing,excellent,thermal,chemical,stability,However,poor,oxygen,reduction,ORR,particularly,temperature,causes,setbacks,achieving,peak,power,density,limiting,application,commercialization,To,improve,doping,strategies,have,found,useful,Herein,porous,materials,06O3,1O3,prepared,exhibits,promising,area,specific,resistance,ASR,respectively,performance,about,times,higher,that,undoped,from,lowest,highest,Through,characterization,was,incorporated,occupied,leading,enhancement,With,anode,supported,single,obtained,results,indicate,derived
AB值:
0.441768
相似文献
Enhancing lithium-ion and electric conductive Li2FeSiO4 cathode through in situ boron-doping and carbon-coating strategy
Hao-Xiang Li;Jia-Hui Zhu;Xiao-Bing Huang;Tao Zhou;Yu-Rong Ren-Hunan Provincial Key Laboratory of Chemical Power Sources,College of Chemistry and Chemical Engineering,Central South University,Changsha 410083,China;Hunan Provincial Key Laboratory of Water Treatment Functional Materials,Hunan Provincial Key Laboratory for Control Technology of Distributed Electric Propulsion Aircraft,College of Chemistry and Materials Engineering,Hunan University of Arts and Science,Changde 415000,China;Jiangsu Province Engineering Research Center of Intelligent Manufacturing Technology for the New Energy Vehicle Power Battery,Changzhou Key Laboratory of Intelligent Manufacturing and Advanced Technology for Power Battery,School of Materials Science and Engineering,Changzhou University,Changzhou 213164,China
Engineering the morphology and electronic structure of atomic cobalt-nitrogen-carbon catalyst with highly accessible active sites for enhanced oxygen reduction
Zhijun Li;Leipeng Leng;Siqi Ji;Mingyang Zhang;Hongxue Liu;Jincheng Gao;Jiangwei Zhang;J.Hugh Horton;Qian Xu;Junfa Zhu-Joint International Research Laboratory of Advanced Chemical Catalytic Materials&Surface Science,College of Chemistry and Chemical Engineering,Northeast Petroleum University,Daqing 163318,Heilongjiang,China;Dalian National Laboratory for Clean Energy&State Key Laboratory of Catalysis,Dalian Institute of Chemical Physics,Chinese Academy of Sciences,Dalian 116023,Liaoning,China;Department of Chemistry,Queen's University,Kingston,Ontario K7L 3N6,Canada;National Synchrotron Radiation Laboratory,University of Science and Technology of China,Hefei 230029,Anhui,China
Enhancing structure and cycling stability of Ni-rich layered oxide cathodes at elevated temperatures via dual-function surface modification
Ying-De Huang;Han-Xin Wei;Pei-Yao Li;Yu-Hong Luo;Qing Wen;Ding-Hao Le;Zhen-Jiang He;Hai-Yan Wang;You-Gen Tang;Cheng Yan;Jing Mao;Ke-Hua Dai;Xia-Hui Zhang;Jun-Chao Zheng-School of Metallurgy and Environment,Central South University,Changsha 410083,Hunan,China;National Engineering Laboratory for High Efficiency Recovery of Refractory Nonferrous Metals,Central South University,Changsha 410083,Hunan,China;Engineering Research Center of the Ministry of Education for Advanced Battery Materials,Central South University,Changsha 410083,Hunan,China;Hunan Provincial Key Laboratory of Chemical Power Sources,College of Chemistry and Chemical Engineering,Central South University,Changsha 410083,Hunan,China;School of Mechanical,Medical and Process Engineering,Queensland University of Technology,Brisbane 4001,Queensland,Australia;School of Materials Science and Engineering,Zhengzhou University,Zhengzhou 450001,Henan,China;College of Chemistry,Tianjin Normal University,Tianjin 300387,China;School of Mechanical and Materials Engineering,Washington State University,Pullman 99164,Washington,USA
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。