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锂-空气电池的研究进展 被引量:8

Research progress in lithium-air battery
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摘要 总结了锂-空气电池的研究现状;比较了非水性和水性电解质的优缺点;介绍了负极、正极、电解质及其他部件的研究进展;提出了目前锂-空气电池研究中存在的问题及对后续研究的建议。 Research status quo of lithium-air battery was summarized.The advantages and disadvantages of nonaqueous and aqueous electrolyte were compared.The research progress in negative electrode,positive electrode,electrolyte and other components was introduced.Some problems in the research of lithium-air battery and the propositions for future research were pointed out.
出处 《电池》 CAS CSCD 北大核心 2011年第3期161-164,共4页 Battery Bimonthly
关键词 锂-空气电池 空气电极 非水性电解质 水性电解质 lithium-air battery air cathode nonaqueous electrolyte aqueous electrolyte
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参考文献31

  • 1Abraham K M, Jiang Z. A polymer electrolyte-based rechargeable lithium/oxygen battery[J] .J Electrochem Soc, 1996,143(1 ) : 1 - 5.
  • 2Bruce P G.Energy storage beyond the horizon: rechargeable lithium batteries[ J]. Solid State lonics, 2008, 179 (21 - 26) : 752 - 760.
  • 3Kuboki T, Okuyama T, Ohsaki T, et al.Lithium-air batteries using hydrophobic room temperature ionic liquid electrolyte [ J ]. J Power Sources,2005,146( 1 - 2) :766 - 769.
  • 4Wang Y, Zhou H. A lithium-air battery with a potential to continuously reduce O2 from air for delivering energy [ J ] . J Power Sources, 2010,195( 1 ) :358 - 361.
  • 5Girishkumar G, McCloskey B, Luntz A C, et al. Lithium-air battery: Promise and challenges [J] .Journal of Physical Chemistry Letters,2010,1 (14) :2 204 - 2 219.
  • 6Zhang J, Xu W, Li X H, et al.Air dehydration membranes for nonaqueous lithium-air batteries[J] .J Electrochem Soc,2010,157 (8) : A940 - A946.
  • 7Hasegawa S, Imanishi N, Zhang T, et al.Study on lithium-fir secondary batteries-stability of NASICON-type lithium ion con- ducting glaas-ceramies with water[ J]. J Power Sources, 2009,189 (1):371 -377.
  • 8Armand M, Tarescon J M. Building better batteries[ J]. Nature, 2008,451 (7 179) : 652 - 657.
  • 9Xiao J, Wang D, Xu W, et al. Optimization of air electrode for Li- air batteries[J]. J Electrochem Soc,2010,157(4) :A487 - A492.
  • 10Beattie S D, Manolescu D M, Blair S L. High-capacity lithium-air cathodes[ J]. J Electrochem Soc, 2009,156 ( 1 ) : A44 - A47.

同被引文献40

  • 1戴永年,杨斌,姚耀春,马文会,李伟宏.锂离子电池的发展状况[J].电池,2005,35(3):193-195. 被引量:67
  • 2冯晶,陈敬超,肖冰.金属空气电池技术研究进展[J].材料导报,2005,19(10):59-62. 被引量:10
  • 3Girishkumar G, McCloskey B, Luntz A C, et al. Lithium-air bat- tery:promise and challenges [ J ] .Journal of Physical Chemistry Letters,2010, 1(14) :2 193 - 2 203.
  • 4D6bart A,Paterson A J,Bao J,et al.a-Mn02 nanowires:a catalyst for the 02 electrode in rechargeable lithium batteries[ J]. Angew Chem,Int Ed,2008,47(24) :4 521 - 4 524.
  • 5Xu W, Xiao J, Wang D, et al.Crown ethers in nonaqueous elec- trolytes for lithium/air batteries[ J]. Electrochem Solid-State Lett, 2010,13(4) : A48 - A51.
  • 6Kichambare P, Kumar J, Rodrigues S, et al. Electrochemical per- formance of highly mesoporous nitrogen doped carbon cathode in lithium-oxygen batteries [ J ] . J Power Sources, 2011,196 ( 6 ) : 3 310-3 316.
  • 7Abraham K M,Jiang Z A.Polymer electrolyte based rechargeable lithium/oxygen battery[J] .J Electrochem Soc, 1996, 143( 1 ) : 1 - 5.
  • 8Tran C, Yang X Q, Qu D Y. Investigation of the gas-diffusion- electrode used as lithium/air cathode in non-aqueous electrolyte and the importance of carbon material porosity [ J] .J Power Sources,2010, 195(7):2 057 - 2 063.
  • 9Mojtaba M, Hall P J. Preparation of controlled porosity carbon aerogels for energy storage in rechargeable lithium oxygen batteries [J]. Elctrochim Acta, 2009, 54(28): 7 444-7 451.
  • 10Patrice S, YurY GoGotSi. Materials for Electrochemical Capacitors [J]. Nature Materials,2008,7:845 -854.

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