首站-论文投稿智能助手
典型文献
Influence of Fe on electrocatalytic activity of iron-nitrogen-doped carbon materials toward oxygen reduction reaction
文献摘要:
The development of highly active nitrogen-doped carbon-based transition metal(M-N-C)compounds for the oxygen reduction reaction(ORR)in proton exchange membrane fuel cells(PEMFCs)greatly helps reduce fuel cell cost,thus rapidly promoting their commercial applications.Among different M-N-C electro-catalysts,the series of Fe-N-C materials are highly favored because of their high ORR activity.However,there remains a debate on the effect of Fe,and rare investigations focus on the influence of Fe addition in the second heat treatment usually performed after acid leaching in the catalyst synthesis.It is thus very critical to explore the influences of Fe on the ORR electrocatalytic activity,which will,in turn,guide the design of Fe-N-C materials with enhanced performance.Herein,a series of Fe-N-C electrocatalysts are synthesize and the influence of Fe on the ORR activity are speculated both experimentally and theoretically.It is deduced that the active site lies in the structure of Fe-N4,accompanied with the addition of appropriate Fe,and the number of active sites increases without the occurrence of agglomeration particles.More-over,it is speculated that Fe plays an important role in stabilizing N as well as constituting active sites in the second pyrolyzing process.
文献关键词:
作者姓名:
Lin LI;Cehuang FU;Shuiyun SHEN;Fangling JIANG;Guanghua WEI;Junliang ZHANG
作者机构:
Institute of Fuel Cells,School of Mechanical Engineering,Shanghai Jiao Tong University,Shanghai 200240,China;SJTU-ParisTech Elite Institute of Technology,Shanghai Jiao Tong University,Shanghai 200240,China
文献出处:
引用格式:
[1]Lin LI;Cehuang FU;Shuiyun SHEN;Fangling JIANG;Guanghua WEI;Junliang ZHANG-.Influence of Fe on electrocatalytic activity of iron-nitrogen-doped carbon materials toward oxygen reduction reaction)[J].能源前沿,2022(05):812-821
A类:
B类:
Influence,electrocatalytic,activity,iron,nitrogen,doped,carbon,materials,toward,oxygen,reduction,reaction,development,highly,active,transition,metal,compounds,ORR,proton,exchange,membrane,fuel,cells,PEMFCs,greatly,helps,reduce,cost,thus,rapidly,promoting,their,commercial,applications,Among,different,series,favored,because,However,there,remains,debate,effect,rare,investigations,focus,addition,second,heat,treatment,usually,performed,after,acid,leaching,synthesis,It,very,critical,explore,influences,which,will,turn,guide,design,enhanced,performance,Herein,electrocatalysts,synthesize,speculated,both,experimentally,theoretically,deduced,that,lies,structure,N4,accompanied,appropriate,number,sites,increases,without,occurrence,agglomeration,particles,More,over,plays,important,role,stabilizing,well,constituting,pyrolyzing,process
AB值:
0.580251
相似文献
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
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。