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Progress in Chemistry 2005, Vol. 17 Issue (04): 604-613 Previous Articles   Next Articles

Special Issue: 锂离子电池

• Review •

Progress in Polyanion-Type Cathode Materials for Lithium Ion Batteries

Shi Zhicong;Yang Yong**   

  1. State Key Laboratory of Physical Chemistry of Solid Surfaces, Department of Chemistry, College of Chemistry and Chemical Engineering, Xiamen University,Xiamen 361005,China
  • Received: Revised: Online: Published:
  • Contact: Yang Yong
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Recent progress on the polyanion-type cathode materials for lithium ion batteries is reviewed. Emphasis is placed on the discussion of the relationships between structures and properties of the cathode materials, especially on the role of the polyanion and how to improve their low electronic conductivity.

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[ 1 ] Scrosati B. Nature , 1995 , 373 : 557 —558
[ 2 ] Winter M, Besenhard J O , Spahr M E , et al . Adv. Mater. ,1998 , 10(10) : 725 —763
[ 3 ] Scrosati B. Electrochimica Acta , 2000 , 45(15/16) : 2461 —2466
[ 4 ] Nanjundaswamy K S , Padhi A K, Goodenough J B , et al . Solid State Ionics , 1996 , 92(1/2) : 1 —10
[ 5 ] Padhi A K, Nanjundaswamy K S , Goodenough J B. J .Electrochem. Soc. , 1997 , 144 (4) : 1188 —1194
[ 6 ] Huang H , Yin S C , Nazar L F. Electrochem. Solid State Lett . ,2001 , 4(10) : A170 —A172
[ 7 ] Yamada A , Hosoya M, Chung S C , et al . J . Power Sources ,2003 , 119/121 : 232 —238
[ 8 ] Padhi A K, Nanjundaswamy K S , Masquelier C , et al . J .Electrochem. Soc. , 1997 , 144 (8) : 2581 —2586
[ 9 ] Tarascon J M, Armand M. Nature , 2001 , 414 : 359 —367
[10] Prosini P P , Zane D , Pasquali M. Electrochim. Acta , 2001 , 46(23) : 3517 —3523
[11] Li G H , Azuma H , Tohda M. J . Electrochem. Soc. , 2002 , 149(6) : A743 —A747
[12] Chung S Y, Bloking J T , Chiang Y M. Nature Mater. , 2002 , 1(2) : 123 —128
[13] Andersson A S , Kalska B , HaggstromL , et al . Solid State Ionics ,2001 , 130 (1/2) : 41 —52
[14] Garcia-Moreno O , Alvarez-Vega M, Garcia-Alvarado F , et al .Chem. Mater. , 2001 , 13(5) : 1570 —1576
[15] Amine K, Yasuda H , Yamachi M. Electrochem. Solid State Lett . , 2000 , 3(4) : 178 —179
[16] Okada S , Sawa S , Egashira M, et al . J . Power Sources , 2001 ,97/98 : 430 —432
[17] Li G H , Azuma H , Tohda M. Electrochem. Solid State Lett . ,2002 , 5(6) : A135 —A137
[18] Padhi A K, Nanjundaswamy K S , Masquelier C , et al . , J .Electrochem. Soc. , 1997 , 144 (5) : 1609 —1613
[19] Rissouli K, Benkhouja K, Ramos-Barrado J R , et al . Mater. Sci .Eng. B , 2003 , 98(3) : 185 —189
[20] Molenda J , Stoklosa A , Bak T. Solid State Ionics , 1989 , 36 :53 —58
[21] Kawaia H , Nagatab M, Kageyamac H , et al . Electrochim. Acta ,1999 , 45(1/2) : 315 —327
[22] Ravet N , Chouinard Y, Magnan J F , et al . J . Power Sources ,2001 , 97/98 : 503 —507
[23] Yang S , Song Y, Zavalij P Y, et al . Electrochem. Comm. ,2002 , 4(3) : 239 —244
[24] Chen Z , Dahn J R. J . Electrochem. Soc. , 2002 , 149 ( 9) :A1184 —A1189
[25] Franger S , Le Cras F , Bourbon C , et al . Electrochem. Solid State Lett . 2002 , 5(10) : A231 —A233
[26] 施志聪( Shi Z C) , 李晨(Li C) , 杨勇( Yang Y) . 电化学(Electrochemistry) , 2003 , 9(1) : 9 —14
[27] Croce F , Epifanio A D , Hassoun J , et al . Electrochem. Solid State Lett . , 2002 , 5(3) : A47 —A50
[28] Barker J , Saidi M Y, Swoyer J L. Electrochem. Solid State Lett . ,2003 , 6(3) : A53 —A55
[29] Shi S , Liu L , Ouyang C , et al . Phys. Rev. B , 2003 , 68 (19) :19518
[30] Subramanya H , Ellis B , Coombs N , et al . Nature Mater. , 2004 ,3 (3) : 147 —152
[31] Arnold G, Garche J , Hemmer R , et al . J . Power Sources , 2003 ,119/121 : 247 —251
[32] Andersson A S , Thomas J O , Kalska B , et al . Electrochem. Solid State Lett . , 2000 , 3(2) : 66 —68
[33] Takahashi M, Tobishima S , Takei K, et al . Solid State Ionics ,2002 , 148 (3/4) : 283 —289
[34] Yamada A , Chung S C , Hinokuma K. J . Electrochem. Soc. ,2001 , 148 (3) : A224 —A229
[35] Iltchev N , Chen Y, Okada S , et al . J . Power Sources , 2003 ,119/121 : 749 —754
[36] Prosini P P , Lisi M, Zane D , et al . Solid State Ionics , 2002 , 148(1/2) : 45 —51
[37] ShimJ , Striebel KA. J . Power Sources , 2003 , 119P121 : 955 —958
[38] Andersson A S , Thomas J O. J . Power Sources , 2001 , 97/98 :498 —502
[39] Yang S , Song Y, Ngala K, et al . J . Power Sources , 2003 , 119/121 : 239 —246
[40] Higuchi M, Katayama K, Azuma Y, et al . J . Power Sources ,2003 , 119/121 : 258 —261
[41] Yang S , Zavalij P Y, Whittingham M S. Electrochem. Comm. ,2001 , 3(9) : 505 —508
[42] Tucker M C , Doeff M M, Richardson T J , et al . Electrochem.Solid State Lett . , 2002 , 5(5) : A95 —A98
[43] Franger S , Cras F L , Bourbon C , et al . J . Power Sources , 2003 ,119/121 : 252 —257
[44] Takahashi M, Tobishima S , Takei K, et al . J . Power Sources ,2001 , 97/98 : 508 —511
[45] Prosini P P , Carewska M, Scaccia S , et al . J . Electrochem.Soc. , 2002 , 149 (7) : A886 —A890
[46] Masquelier C , Padhi A K, Nanjundaswamy K S , et al . J . Solid State Chem. , 1998 , 135 : 228 —234
[47] Patoux S , Wurm C , Morcrette M, et al . J . Power Sources , 2003 ,119/121 : 278 —784
[48] Morgan D , Ceder G, Saidi M Y, et al . Chem. Mater. , 2002 , 14(1) : 4684 —4693
[49] Saidi M Y, Barker J , Huang H. J . Electrochem. Soc. , 2002 ,149(7) : A149 —A151
[50] Barker J , Saidi M Y, Swoyer J L. J . Electrochem. Soc. , 2003 ,150(6) : A684 —A688
[51] Gaubicher J , Wurm C , Goward G. Chem. Mater. , 2000 , 12(11) : 3240 —3242
[52] Yin S C , Grondey H , Strobel P , et al . J . Am. Chem. Soc. ,2003 , 125 (2) : 326 —327
[53] Morgan D , Ceder G, Saidi M Y, et al . J . Power Sources , 2003 ,119/121 : 755 —759
[54] Saidi M Y, Barker J , Huang H , et al . J . Power Sources , 2003 ,119/121 : 266 —272
[55] Huang H , Yin S , Kerr T , et al . Adv. Mater. , 2002 , 14 (21) :1525 —1528
[56] Patoux S , Masquelier C. Chem. Mater. , 2002 , 14 : 5057 —5068
[57] Manickam M, Minato K, Takata M. J . Electrochem. Soc. ,2003 , 150 (8) : A1085 —A1089
[58] Manickam M. J . Power Sources , 2003 , 113 (1) : 179 —183
[59] Manickam M, Takata M. Solid State Ionics , 2003 , 158 (3/4) :233 —241
[60] Manickam M, Takata M. Electrochim. Acta , 2003 , 48 ( 8) :957 —963
[61] Azmi B M, Ishihara T , Nishiguchi H , et al . J . Power Sources ,2003 , 119/121 : 273 —277
[62] Dupre N , Gaubicher J , Angenault J , et al . J . Power Sources ,2001 , 97/98 : 532 —534
[63] Kerr T A , Gaubicher J , Nazar L F. Electrochem. Solid State Lett . , 2000 , 3(10) : 460 —462
[64] Patoux S , Masquelier C. Chem. Mater. , 2002 , 14 (5) : 2334 —2341
[65] Ruh R , Wadsley A D. Acta Crystallogr. , 1966 , 21 (6) : 974 —978
[66] Takeda Y, Itoh K, Kanno R , et al . J . Electrochem. Soc. ,1991 , 138 (9) : 2566 —2571
[67] Cushing B L , Kang S H , Goodenough J B. Inter. J . Inor. Mater. , 2001 , 3 : 875 —879
[68] Wurm C , Morcrette M, Rousse G, et al . Chem. Mater. , 2002 ,14(6) : 2701 —2710
[69] Uebou Y, Okada S , Yamaki J . J . Power Sources , 2003 , 115(1) : 119 —124
[70] Masquelier C , Reale P , Wurm C. et al . J . Electrochem. Soc. ,2002 , 149 (8) : A1037 —A1044
[71] Shackle D R , Hill M. US 6 068 949 , 2000
[72] Armand M, Michot C , Ravet N , et al . US 6 085 015 , 2000

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