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作 者:Achmad Yanuar Maulana Jungwook Song Da Won Leeg Chae Eun Leeg Jongsik Kimg
机构地区:[1]Department of Chemistry,Dong-A University,Busan 49315,South Korea [2]Department of Chemical Engineering(BK21 FOUR Graduate Program),Dong-A University,Busan 49315,South Korea
出 处:《Journal of Materials Science & Technology》2021年第26期184-193,共10页材料科学技术(英文版)
基 金:supported by the Dong-A University research fund。
摘 要:Sodium-ion batteries(SIBs)are considered one of the most promising energy storage systems for replacing lithium-ion batteries because of the high abundance and low cost of sodium.Iron oxyfluoride(FeOF)is a promising conversion-based cathode material for SIBs because of its high theoretical capacity of about855 mA h g^(-1),low-cost chemical compositions,and its lower sensitivity to the size of charged carrier ions.However,the poor electrical conductivity and ionic diffusion of FeOF result in a low rate capability and cyclability.In this work,FeOF nanoparticles wrapped by graphitic carbon layers were synthesized using abietic or maleopimaric acid as both the carbon source and organic ligand.In addition,the morphology of the FeOF particles was gradually controlled from rod to spherical shapes,simply depending on the rosin acids.The FeOF nanoparticles prepared with maleopimaric acid showed a large reversible discharge capacity of 356.7 mA h g^(-1)with a fading rate of 0.21%per cycle after 100 cycles at a current density of 100 mA g^(-1)and an excellent rate capability.
关 键 词:Na-ion batteries CATHODE Iron oxyfluoride Graphitized carbon Maleopimaric acid
分 类 号:TB383.1[一般工业技术—材料科学与工程] TM53[电气工程—电器]
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