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钠离子电池正极材料的研究进展 被引量:5

Research progress in the sodium-ion battery cathode material
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摘要 介绍了钠离子电池正极材料的几种主要类型,如过渡金属氧化物、聚阴离子化合物的研究进展。以各种正极材料的结构与电化学性能之间的关联为线索,综述了钠离子电池正极材料方面的研究进展。 Some main types of positive materials, including transition metal oxides, poly-anionic compounds for sodium-ion batteries were discussed. Research progress in the sodium-ion battery cathode material was summarized through the thread of relation between structure and electrochemical performance of all kinds of cathode materials.
出处 《电池》 CAS CSCD 北大核心 2013年第4期239-241,共3页 Battery Bimonthly
基金 上海市科委基础重点项目资助(13NM1401400)
关键词 钠离子电池 正极材料 过渡金属氧化物 聚阴离子化合物 sodium-ion battery positive material transition metal oxides poly-anionic compound
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  • 1Berthelot R,Carlier D, Delmas C. Electrochemical investigation of the P2-Na= CoO2 phase diagram [ J ]. Nat Mater, 2011,10 ( 1 ) : 74 -80.
  • 2Braconnicr J J, Delmas C, Hagenmuller P. Etude par desintercala- tion electrochimique des systemes Na, CrO2 et Na, NiO2 [ J]. Mater Res Bu11,1982,17(8) :993 - 1 000.
  • 3Komaba S,Takei C ,Nakayama T,et al. Electrochemical intercala- tion activity of layered NaCrO2 vs. LiCrO2 [ J]. Electrochem Com- mun,2010,12 (3) :355 - 358.
  • 4杨顺毅,王先友,魏建良,李秀琴,唐安平.Na-Mn-O正极材料的合成及电化学性能[J].物理化学学报,2008,24(9):1669-1674. 被引量:14
  • 5Ding J J,Zhou Y N,Sun Q,et al. Cycle performance improvement of NaCrO2 cathode by carbon coating for sodium ion batteries[ J]. Electrochcm Commun ,2012 (22) :85 - 88.
  • 6Goodenough J B, Hong H Y P, Kafalas J A. Fast Na + -ion transport in skeleton structures[ J ]. Mat Res Bull, 1976,11 (2) :203 - 220.
  • 7Sun Q,Ren Q Q,Fu Z W. NASICON-type Fe2(MoO4)3 thin film as cathode for rechargeable sodium ion battery [ J ]. Electrochem Commun ,2012 (23) : 145 - 148.
  • 8钱江锋,周敏,曹余良,杨汉西.Na_xM_yFe(CN)_6(M=Fe,Co,Ni):一类新颖的钠离子电池正极材料[J].电化学,2012,18(2):108-112. 被引量:14
  • 9Zaghib K, Trottier J, Hovington P, et al. Characterization of Na- based phosphate as electrode materials for electrochemical cells [J]. J Power Sources,2011 (196) :9 612 -9 617.
  • 10Delmas C, Fouassier C, Hagenmuller P. Structural classification and properties of the layered oxides [ J ]. Physica Section B + C, 1980,99( 1 -4) :81 -85.

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  • 1Delmas C, Fouassier C, Hagenmuller P. Structural classifi- cation and properties of the layered oxides[J]. Physica 13 C, 1980,99(1-4) :81.
  • 2Yabuuchi N, Komaba S. Recent research progress on iron- and manganese-based positive electrode materials for re- chargeable sodium batteries[J]. Sci Technol Adv Mater, 2014,15(4) :043501.
  • 3Takeda Y, Akagi J, Edagawa A, et al. A preparation and polymorphic relations of sodium iron oxide (NaFeO2)[J]. Mater Res Bulle, 1980,15(8) : 1167.
  • 4Okada S, Takahashi Y, Kiyabu T, et aL Reversible charge and discharge properties for a Na/NaFeO2 cell[C]//210th ECS Meeting Abstracts. Cancun,2006.
  • 5Zhao J, Zhao L, Dimov N, et al. Electrochemical and ther- mal properties of alpha-NaFeO2 cathode for Na-ion batteries [J]. J Electrochem SOc, 2013,160(5) : A3077.
  • 6Monyoncho E, Bissessur R. Unique properties of alpha-Na- FeO2 : De-intercalation of sodium via hydrolysis and the in- tercalation of guest molecules into the extract solution[J]. Mater Res Bu11,2013,48(7) :2678.
  • 7Takeda Y, Nakahara K, Nishiiima M, et al. Sodium de-in- tercalation from sodium iron oxide[J]. Mater Res Bull, 1994,29(6) :659.
  • 8Park K, Han D, Kim H, et al. Characterization of a P2- type chelating-agent- assisted Na2/a Fel/2 Mnl/2 O2 cathode material for sodium-ion batteries[J]. RSC Adv, 2014, 4 (43):22798.
  • 9Yabuuchi N, Kajiyama M, Iwatate J, et al. P2-type Na- EFel/2 Mnl/2]O2 made from earth-abundant elements for re- chargeable Na batteries[J]. Nature Mater, 2012,11 (6) : 512.
  • 10Yoshida H, Yabuuchi N, Komaba S. NaFe0. 5 CO0.5 O2 as high energy and power positive electrode for Na-ion batteries [J]. Electrochem Commun, 2013,34 : 60.

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