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水系锂离子电池研究进展 被引量:4

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摘要 采用锂离子嵌入化合物(碳和钻酸锂)和有机电解质的锂离子电池,自1990年商品化以来,以其高比能量的优点,迅速占领小型电池市场,并已广泛用于摄像机、笔记本电脑、移动电话等情报通讯器件。但因为所采用的有机电解质的可燃性和存不正确使用(如过充或短路)时电极材料与有机电解质的高反应活性等引起的安全性和高成本等问题,
出处 《电源技术》 CAS CSCD 北大核心 2008年第7期431-434,共4页 Chinese Journal of Power Sources
基金 国家自然科学基金(No.20633040) 科技部“863”(No.2006AA05Z218) “973”计划(2007CB209703)的资助
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  • 1LI W, DAHN J R, WAINWRIGHT D S. Rechargeable Lithium ion batteries with aqueous electrolytes[J]. Science, 1994, 264:1115.
  • 2KOHLER J, MAKIHARA H, UEGAITO H, et al. LiV3O4: characterization as anode material for an aqueous rechargeable Li-ion battery system[J]. Electrochin Acta, 2000, 46: 59.
  • 3WANG H B, HUANG K L, ZENG Y Q, et al.Electrochemical properties of TiP2O3 and LiTi (PO4)3 as anode material for lithium ion battery with aqueous solution electrolyte[J]. Electrochin Acta, 2007, 52: 3280.
  • 4WANG G J, FU L J, ZHAO N H, et al. An aqueous rechargeable lithium ion battery with good cycling performance[J]. Angew Chem Int Ed, 2007, 46: 295,
  • 5WANG H B, ZENG Y Q, HUANG K L, et al. Improvement of cycle performance of lithium ion cell LiMn2O4/LixV2O5 with aqueous electrolyte by polypyrrole coating on anode [J]. Electrochin Acta, 2007, 52: 5102.
  • 6LUO J Y, XIA Y Y. Aqueous lithium-ion battery LiTi2(PO4)JLiMn2O4 with high power and energy densities as well as superior cycling stability[J]. Adv Funct Mater, 2007, 17: 3877.
  • 7WANG Y G, XIA Y Y. Hybrid aqueous energy storage cells using activated carbon and lithium-ion intercalated compounds[J]. J Eleetrochem Soc, 2006, 153: A 450.
  • 8WANG Y G, LUO J Y, WANG C X, et al. Hybrid aqueous energy storage cells using activated carbon and lithium-ion intercalated compounds[J]. J Electrochem Soc, 2006, 153: A 1425.
  • 9WANG Y G, LUO J Y WU Wet al. Hybrid aqueous energy storage cells using activated carbon and lithium-ion intercalated compounds[J]. J Electrochem Soc, 2007, 154: A 228.
  • 10HUNTER J C.Prepration of a new crystal form of manganesedioxide-lambda-MnO2[J]. J Solid State Chem, 1981, 39: 142.

同被引文献29

  • 1胡传跃,李新海,王志兴.锂离子电池中电解液的热行为分析[J].中国稀土学报,2004,22(z1):333-336. 被引量:1
  • 2李枝贤,鲁道荣.锂离子电池正极材料Li_(1+x)V_3O_8的研究进展[J].电池工业,2006,11(2):139-142. 被引量:4
  • 3许正权,宋学锋,李敏莉.本质安全化管理思想及实证研究框架[J].中国安全科学学报,2006,16(12):79-85. 被引量:63
  • 4Wadsley A D. Crystal chemistry of non - stoichiometric pentavalentvandadium oxides : crystal structure of Li1+xV3 08 [ J ]. ActaCrystallographica, 1957, 10(4):261-267.
  • 5Besenhard J 0,Schollhomr R. The discharge reaction mechanism ofthe Mo03 electrode in organic electrolytes [ J ]. Journal of PowerSources, 1977, 1(3):267-276.
  • 6Winter M,Besehnard J 0,Sphar ME,et al. Insertion electrodematerials for rechargeable lithium batteries. Adv Mater, 1998,10(10):725-763.
  • 7Kawakita J, Kato T, Katayama Y, et al. Lithium insertion behaviour ofLi1+X V3 08 withdifferentdegrees of crystallinity [ J ]. Journal of powersources, 1999, 81(9):448-453.
  • 8Liu H W,Yang H M, Huang T. Synthesis, structure andelectrochemical properties of one - dimensional nanometer materialsLiV308 [ J]. Materials Science and Engineering: B,2007 , 143(1-3):60-63.
  • 9Xiong X H, Wang Z X,Li X H, et al. Study on ultrafast synthesis ofLiV3 08 cathode material for lithium - ion batteries [ J ]. MaterialsLetters, 2012, 76(1) :8-10.
  • 10Liu H M,Wang Y G,Yang W S, et al. A large capacity of LiV308cathode material for rechargeable lithium - based batteries [ J ].Electrochimica Acta, 2011,56(3) : 1392-1398.

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