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a S , Egashira M, et al . J . Power Sources , 2001,97/98 : 430 —432[24] Andersson A S , Kalska B , HaggstromL , et al . Solid State Ionics ,2001 , 130 (1/2) : 41 —52[25] Huang H , Yin S C , Nazar L F. Electrochem. Solid State Lett . 2001 , 4 (10) : A170 —A172[26] Padhi A K, Najundaswamy K S , Goodenough J B. [J ] . JElect rochem Soc , 1997 , 144 : 118821194.[27] Andersson A S , Thomas J O. [ J ] . J Power Source ,2001 , 97298 : 4982502.[28] Prosini P P , Lisi M , Zane D ,et al. [J ] . Solid State Ion2ics , 2002 , 148 : 45251.[29] Goodenough J B , Mizuchima K. [ P ] . US : 4 ,302 ,518 ,1981.[30] Chung S Y, Bloking J T, Chiang YM. Nature Mater. , 2002 , 1(2) : 123 —128[31] Molenda J , Stoklosa A , Bak T. Solid State Ionics , 1989 , 36 :53 —58[32] Kawaia H , Nagatab M, Kageyamac H , et al . Electrochim. Acta ,1999 , 45 (1P2) : 315 —327[33] Imanishi N , Fujiyoshi M , Takeda Y, et al. [J ] . SolidState Ionics , 1999 , 118 : 1212128.[34] Saadoune I , Menet rier M , Delmas C. [ J ] . J MaterChem , 1997 , 7 : 250522511.[35] CHUNG S Y, BLOKING J T, CHIANG YM. Electronically conductive phosphoolivinesas lithium storage electrodes [J]. Nature Mater,2002, 1(2): 123128.[36] Barker J , Saidi M Y, Swoyer J L. Electrochem. Solid State Lett . ,2003 , 6 (3) : A53 —A55[37] Amine K, Yasuda H , Yamachi M. Electrochem. Solid State Lett . , 2000 , 3 (4) : 178 —179[38] Okada S , Sawa S , Egashira M, et al . J . Power Sources , 2001 ,97P98 : 430 —432[39] Li G H , Azuma H , Tohda M. Electrochem. Solid State Lett . 2002 , 5 (6) : A135 —A137[40] Nyte39。n A, Kamali Sm L, et al.The lithium extraction/insertion mechanism in Li2FeSiO4 [J].Journal of Materials Chemistry, 2006,16,22662272.[41] Nyten A ,Abouimrane A,Armand M,et al.[J].Electrochem Commun,2005,7:156160.[42] PETER L, RAJEEV A,ANTON N, et al. An ab initio study of the Liion battery cathode material Li2FeSiO4 [J]. Electrochemistry Communications, 2006, 8:797800.[43] NYTEN A, ABOUIMRANE A, ARMAND M, et al. Electrochemical performance of Li2FeSiO4 as a new Libattery cathode material [J]. Electrochem Commun, 2005, 7:156160.[44] DOMINKO R, BELE M, GABERSCEK M, et al. Structure and electrochemical performance of Li2MnSiO4 and Li2FeSiO4 as potential Libattery cathode materials[J]. Electrochem Commun, 2006,8:217222.[45] DOMINKO R,CONTE D E,HANZEL D,et al. Impact of synthesis conditions on the structure and performance of Li2FeSiO4[J]. Journal of Power Sources,2008, 178:842847.[46] Z L Gong,Y X Li,Y Li2FeSi04 electrode material synthesized through hydrothermalassisted solgel process[J].Electrochemical and Solidstate Letters, 2008,11(5): A60A63[47] R Domink, M bele, M Gaberscek. Structure and electrochemical performance of Li2MnSi04 and Li2FeSi04 as potential Libattery cathode materials[J].Electrochemistry Communications, 2006, 8(2): 217222[48] Deyu Wang, X D Wu, Z X Wang, et causing cyclicInstability of LiFeP04 cathode material[J] .J. Power Sources, 2005,140(1): 125一128[49] DOMINKO R, BELE M,GABERSCEK M,et al. Structure and electrochemical performance of Li2MnSiO4 and Li2FeSiO4 as potential Libattery cathode materials[J]. Electrochem Commun,2006,8:217222.[50] YANG Y, LI Y X, GONG Z L. Synthesis and characterization of high capacity silicate/C cathode materials for lithium ion batteries [C]Abstract 210, IMLB 2006. Biarritz, France: 2006:1823.[51] LI Yixiao, GONG Zhengliang, YANG Yong. Synthesis and characterization of Li2MnSiO4/C nanoposite cathode material for lithium ion batteries[J]. Journal of Power Sources, 2007, 174( 2):528532.[52] DOMINKO R, BELE M, KOKALJ A, et al. Li2MnSiO4 as a potential Libattery cathode material[J]. Journal of Power Sources, 2007,174(2):457461.[53] ANTON K, ROBERT D, GREGOR M, et al. Beyond oneelectron reaction in Li cathode materials: Designing Li2MnxFe1xSiO4 [J].Chem Mater,2007, 19(15):36333640.[54] GONG Z L, LI Y X, YANG Y. Synthesis and electrochemical performance of Li2CoSiO4 as cathode material for lithium ion batteries [J]. Journal of Power Sources, 2007,174(2):524527.[55] ARROYODE DOMPABLO M E, ARMAND M, TARASCON JM,et design of polyoxianionic cathode materials based on electronegativity correlations: An exploration of the Li2MSiO4 system (M = Fe, Mn, Co, Ni) [J]. Electrochemistry Communications,2006, 8:12921298.