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引用本文格式: Ma Jun-Jie,Ning Kai,Wang Ting,Liu Jian-Feng,Yuan Bin-Xia,Pan Wei-Guo,Shi Zheng-Rong. DFT study on Oxygen Reduction Reaction activity of Fe/Co/Ni-N doped graphene [J]. J. At. Mol. Phys., 2024, 41(3): 032004 (in Chinese) [马俊杰,宁锴,王婷,刘建峰,袁斌霞,潘卫国,施正荣. Fe/Co/Ni-N共掺杂石墨烯氧还原反应活性的DFT研究 [J]. 原子与分子物理学报, 2024, 41(3): 032004]
 
Fe/Co/Ni-N共掺杂石墨烯氧还原反应活性的DFT研究
DFT study on Oxygen Reduction Reaction activity of Fe/Co/Ni-N doped graphene
摘要点击 105  全文点击 19  投稿时间:2022-08-26  修订日期:2022-09-14
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DOI编号   
中文关键词   单金属原子  氮掺杂  石墨烯  氧还原反应  DFT模拟
英文关键词   Single metal atom  nitrogen doping  graphene  oxygen reduction reaction  DFT
基金项目   
作者单位E-mail
马俊杰 上海电力大学 1416024847@qq.com 
宁锴 上海电力大学  
王婷 上海电力大学  
刘建峰* 上海电力大学 janice.liujianfeng@gmail.com 
袁斌霞 上海电力大学  
潘卫国 上海电力大学  
施正荣 上海电力大学  
中文摘要
    为了研究Fe/Co/Ni-N掺杂石墨烯的氧还原反应(ORR)活性,比较单金属原子和氮不同的掺杂方式对石墨烯ORR活性的影响.利用Materials Studio软件建立了Fe/Co/Ni-N掺杂石墨烯模型,然后将氧气分子分别吸附在Fe/Co/Ni-N掺杂石墨烯模型表面上.采用CASTEP模块对构建的模型进行结构优化并模拟计算,分析了Fe/Co/Ni-N掺杂石墨烯的吸附能、脱附能和导电性变化规律.基于模拟计算,发现单金属原子掺杂石墨烯时,Fe掺杂石墨烯的ORR活性优于Co和Ni;单金属原子和氮共掺杂石墨烯时,Fe-N掺杂石墨烯的ORR活性高于Co-N和Ni-N掺杂石墨烯,且M-N4-G形态的ORR活性优于M-N1-G、M-N2-G和M-N3-G.
英文摘要
    In order to study the oxygen reduction activity(ORR) of Fe/Co/Ni-N doped graphenes, the influences of single metal atom and nitrogen co-doping on ORR activity of graphene were compared. The Fe/Co/Ni-N doped graphene models were established using materials Studio, and then oxygen molecules were adsorbed respectively on the surfaces of Fe/Co/Ni-N doped graphene models. CASTEP module was used to optimize the structure of the model and simulation calculation. The adsorption energies, desorption energies and conductivities of Fe/Co/Ni-N doped graphenes were analyzed. Based on the simulation results, it is found that the ORR activity of Fe doped graphene is better than that of Co or Ni doped graphene when graphene is doped with single metal atom. As graphene is Co-doped with single metal atom and nitrogen, the ORR activity of Fe-N doped graphene is better than that of Co-N or Ni-N doped graphene, and the ORR activity of M-N4-G was better than those of M-N1-G M-N2-G and M-N3-G.

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