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研究论文

锂离子电池正极材料LiNi_(1/3)Co_(1/3)Mn_(1/3)O_2在不同电解液中的性能研究

  • 刘静静 ,
  • 仇卫华 ,
  • 于凌燕 ,
  • 赵海雷
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  • 北京科技大学材料科学与工程学院无机非金属材料系,北京科技大学材料科学与工程学院无机非金属材料系,北京科技大学材料科学与工程学院无机非金属材料系,北京科技大学材料科学与工程学院无机非金属材料系,北京科技大学材料科学与工程学院无机非金属材料系 北京100083,北京100083,北京100083,北京100083,北京100083

收稿日期: 2006-11-28

  修回日期: 2006-11-28

  网络出版日期: 2006-11-28

Electrochemical Characterization of Positive Electrode Material LiNi_(1/3)Co_(1/3)Mn_(1/3)O_2 in Different Electrolytes

  • LIU Jing-jing ,
  • QIU Wei-hua~ ,
  • YU Ling-yan ,
  • ZHAO Hai-lei
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  • (Department of Inorganic Nonmetallic Materials,School of Materials Science and Engineering,University of Science and Technology Beijing,Beijing 100083,China

Received date: 2006-11-28

  Revised date: 2006-11-28

  Online published: 2006-11-28

摘要

应用低热固相合成法制备锂离子电池正极材料L iCo1/3N i1/3Mn1/3O2.研究该材料的结构与形貌,并比较它在商品L iPF6盐和在实验室合成的L iBOB(L iB(C2O4)2)盐电解液中的电化学性能.在L iPF6/EC+DMC+DEC电解液中,该材料表现出优良的电化学性能,其于0.5C、1C、1.5C、2C、3C放电倍率的初始比容量依次为167、163、163、157、147mAh/g,电池的循环性能也较好,说明低热固相合成的材料的有较好的高倍率性能.在L iBOB/EC+DEC+DE电解液中,0.5C倍率下比容量为160 mAh/g,较之L iPF6盐电解液的相差不大,但在高倍率下的比容量有所下降.

本文引用格式

刘静静 , 仇卫华 , 于凌燕 , 赵海雷 . 锂离子电池正极材料LiNi_(1/3)Co_(1/3)Mn_(1/3)O_2在不同电解液中的性能研究[J]. 电化学, 2006 , 12(4) : 373 -377 . DOI: 10.61558/2993-074X.1755

Abstract

Cathode materials LiNi_(1/3)Co_(1/3)Mn_(1/3)O_(2) were prepared by low-heating solid-state reaction.The micro-structure and morphology of as-synthesized materials have been investigated by using XRD and SEM.The compatibilities of LiNi_(1/3)Co_(1/3)Mn_(1/3)O_(2) with purchased LiPF_(6)/ EC+DMC+DEC electrolyte and prepared LiBOB/EC+DEC+EMC electrolyte have also been studied.The Li/LiNi_(1/3)Co_(1/3)Mn_(1/3)O_(2) batteries showed excellent electrochemical properties in the LiPF_(6)/ EC+DMC+DEC electrolyte.Reversible discharge capacities of 167、163、163、157、147mAh/g at 0.5C、1C、1.5C、2C、3C rate between 2.7~4.35 V,with stable cycling performances have been obtained.Comparatively,the specific capacity of 160 mAh/g at 0.5C was obtained in LiBOB/EC+DEC+DEC electrolyte,which was just a little lower than that in the other electrolyte.However,the high rate capability of the materials in LiBOB/EC+DEC+DEC was not as good as that in LiPF_(6)/EC+DMC+DEC,which needs to be improved in further studies.

参考文献

[1]X iao J(肖婕),Zhan H(詹晖),Zhou Y H(周运鸿).Synthesis and electrochem ical behavior of layered-struc-ture L iMn1-xCrxO2[J].E lectrochem istry(in Ch i-nese),2004,10(3):324~329. [2]Sun Y K,Kang S H,Am ine K.Synthesis and electro-chem ical behavior of layered L i(N i0.5-xCo2xMn0.5-x)O2(x=0 and 0.025)m aterials prepared by solid-state re-action m ethod[J].M ater.Res.Bu ll.,2004,39:819~825. [3]Ohzuku T,M ak imura Y.Layered lith ium insertionM ate-rial of L iCo1/3N i1/3Mn1/3O2for L ith ium-Ion Batteries[J].Chem.Lett.,2001,7:642~643. [4]Yabuuch i N,Ohzuku T.Novel lith ium insertion m aterialof L iCo1/3N i1/3Mn1/3O2for advanced lith ium-ion batter-ies[J].J.Power Sources,2003,119-121:171~174. [5]L iu J J(刘静静),Q iu W H(仇卫华),Zhao H L(赵海雷),et al.Research progress on layered L iMnO2-basedcathode m aterials for lith ium-ion batteries[J].J.Ch i-nese Ceram ic Soc.(in Ch inese),2005,33(9):1127~1132. [6]Xu K,Zhang S S,Poese B A,et al.L ith ium b io(ox-alate)borate stab ilize graph ite anode in propylene car-bonate[J].E lectrochem.Solid-state Lett.,2002,5(11):A259~A262. [7]Xu K,Zhang S S,Jow T R,et al.L iBOB as salt for lith i-um-ion batteries[J].E lectrochem.Solid-State Lett.,2002,5(1):A26~A29. [8]Yu B T,Q iu W H,L i F S,et al.The electrochem icalcharacterization of lith ium B is(oxalato)borate synthe-sized by a novel m ethod[J].E lectrochem.Solid-StateLett.,2006,9(1):A1~A4. [9]Shaju K M,Subba Rao G V,Chowdari B V R.Perform-ance of layered L i(N i1/3Co1/3Mn1/3)O2as cathode forL i-ion batteries[J].E lectroch im ica Acta,2002,48:145~151. [10]W ang Z X,Sun Y C,Chen L Q,et al.E lectrochem icalcharacterization of positive electrode m aterial L iN i1/3Co1/3Mn1/3O2and compatib ility w ith electrolyte for lith-ium-ion batteries[J].J.E lectrochem.Soc.,2004,151(6):A914~A921.
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