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Progress in Chemistry 2007, Vol. 19 Issue (01): 66-73 Previous Articles   Next Articles

Special Issue: 锂离子电池

• Review •

Solid-State Thin Film Li-ion Batteries

Song Jie1; Wu Qihui2**;Dong Quanfeng1**; Zheng Mingsen1; Wu Suntao3; Sun Shigang1   

  1. 1.School of Chemistry & Chemistry Engineering,Xiamen University,Xiamen 361005,China;2.Department of Physics,Xiamen University,Xiamen 361005,China;3.Pen-Tung Sah MEMS research center, Xiamen University, Xiamen, 361005,China
  • Received: Revised: Online: Published:
  • Contact: Qihui Wu;Dong Quanfeng
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Thin film lithium-ion batteries based on polymer electrolytes and solid-state inorganic electrolytes are introduced in this article.We mainly review the progress of the all-solid-state thin film lithium-ion batteries based on inorganic electrolytes, including the preparation methods and the properties of the cathode materials,anode materials and solid-state inorganic electrolytes.The studies on constructions of the thin film lithium batteries are also presented.

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[ 1 ] Meunier G, Dormoy R , Levasseur A. Mater. Sci . Eng. B ,1989 , 3 : 19 —23
[ 2 ] Dyer C K. Nature , 1990 , 343 : 546 —547
[ 3 ] Julien C. Lithium Batteries , New Materials , Developments and Perspectives (ed. Pistoia G) , vol . 5. Amsterdam: Elsevier , 1994.167
[ 4 ] Jones S D , Akridge J R. Handbook of Solid State Batteries and Capacitors ( ed. Munshi M Z A) . Singapore : World Scientific ,1995. 209
[ 5 ] Souquet J L , Duclot M. Solid State Ionics , 2002 , 148 : 375 —379
[ 6 ] Sanchez J Y, Alloin F , Chaix N , et al . Solid State Ionics ,Science and Technology ( ed. Chowdari B V R) . Singapore ,1998. 173
[ 7 ] Armand M, Sanchez J Y, Gauthier M, et al . The Electrochemistry of Novel Materials ( eds. Lipkoski J , Ross P N) , vol . 3. VCH Publisher , 1993. 65
[ 8 ] Feuillade G, Perche P. J . Appl . Electrochem. , 1975 , 5 : 63 —67
[ 9 ] Tarascon J M, Gozdz A S , Schmutz C , et al . Solid State Ionics ,1996 , 86/88 : 49 —54
[10] Michot T , Nishimoto A , Watanabe M. Electrochim. Acta , 2000 ,45 : 1347 —1360
[11] Murata K, Isuchi S , Yoshihisa Y. Electrochim. Acta , 2000 , 45 :1501 —1508
[12] Scrosati B. Electrochim. Acta , 2000 , 45 : 2461 —2466
[13] Koksbang P , Olsen I I , Tonder P E , et al . J . Power Sources ,1990 , 32 : 175 —180
[14] Ilic D. in Abstract No. 17 of the 13th IBA Batteries and Batteries Materials Symposium. Marrakesh , Morocco. 1999
[15] Nakane I , Watanabe H. ISSI Lett . , 2000 , 10 : 3 —6
[16] Saunier J , Alloin F , Sanchez J Y, et al . J . Power Sources ,2003 , 119/121 : 454 —459
[17] Kumugai N , Kitamoto H , Baba M, et al . J . Appl .Electrochem. , 1998 , 28 : 41 —41
[18] Kanehori K, Matsumoto K, Miyauchi K, et al . Solid State Ionics ,1983 , 9/10 : 1445 —1448
[19] Jones S D , Akridge J R. J . Power Sources , 1993 , 43/44 : 505 —513
[20] Bates J B , Dudney N J , Lubben D C , et al . J . Power Sources ,1995 , 54 : 58 —62
[21] Bates J . Electron. Eng. , 1997 , 69 : 63 —64
[22] Bates J B , Dudney N J , Neudecher B , et al . Solid State Ionics ,2000 , 135 : 33 —45
[23] Neudecher B J , Dudney N J , Bates J B. J . Electrochem. Soc. ,2000 , 147 : 517 —523
[24] Neudecher B J , Zuhr R A , Bates J B. J . Power Sources , 1999 ,81 : 27 —32
[25] Dudney N J , Bates J B , Zuhr R A , et al . J . Electrochem. Soc. ,1999 , 146 : 2455 —2464
[26] Hart F X, Bates J B. J . App. Phys. , 1998 , 83 : 7560 —7566
[27] Jeon E J , Shin Y W, Nam S C , et al . J . Electrochem. Soc. ,2001 , 148 : A318 —A322
[28] Chen C H , Kelder E M, Schoonman J . J . Power Sources , 1997 ,68 : 377 —380
[29] Baba M, Kumagai N , Kobayashi H , et al . Electrochem. Solid State Lett . , 1999 , 2 : 320 —322
[30] Baba M, Kumagai N , Fujita N , et al . J . Power Sources , 2001 ,97/98 : 798 —800
[31] Lee S J , Baik H K, Lee S M. Electrochem. Commun. , 2003 , 5 :32 —35
[32] Kuwata N , Kawamura J , Toribami K. Electrochem. Commun. ,2004 , 6 : 417 —421
[33] Hess M, Lebraud E , Levasseur A. J . Power Sources , 1997 , 68 :204 —207
[34] Abe T , Takeda K, Fukutsuka T , et al . J . Electrochem. Soc. ,2004 , 151 : C694 —C697
[35] Courtney I A , Dahn J R. J . Electrochem. Soc. , 1997 , 144 :2943 —2948
[36] Lee W H , Son H C , Moon H S , et al . J . Power Sources , 2000 ,89 : 102 —105
[37] Winter M, Besenhard J O. Electrochim. Acta , 1999 , 45 : 31 —50
[38] Lee S J , Lee H Y, Jeong S H , et al . J . Power Sources , 2002 ,111 : 345 —349
[39] Nam S C , Yoon Y S , Cho W I , et al . Electrochem. Commun. ,2001 , 3 : 6 —10
[40] Neudecker B J , Zuhr R A. Battery Materials , 2000 , 24 : 295 —295
[41] Netz A , Huggins R A , Weppner W. J . Power Sources , 2003 ,119/121 : 95 —100
[42] Kim Y L , Lee H Y, Jang S W, et al . Electrochim. Acta , 2003 ,48 : 2593 —2597
[43] Weydanz W J , Wohlfahrt-Mehrens M, Huggins R A. J . Power Sources , 1999 , 81/82 : 237 —242
[44] Dong H , Ai X P , Yang H X. Electrochem. Commun. , 2003 , 5 :952 —957
[45] Wang G X, Sun L , Bradhurst D H , et al . J . Power Sources ,2000 , 88 : 278 —281
[46] Wang G X, Sun L , Bradhurst D H , et al . J . Alloys Compd. ,2000 , 306 : 249 —252
[47] Lee S J , Baik H K, Lee S M. Electrochem. Commun. , 2003 , 5 :32 —35
[48] Lee S J , Lee H Y, Baik H K, et al . J . Power Sources , 2003 ,119/121 : 113 —116
[49] Wolfenstine J . J . Power Sources , 2003 , 124 : 241 —245
[50] Anani A , Huggins R A. J . Power Sources , 1992 , 38 : 363 —372
[51] Beaulieu L Y, Hewitt K C , Turner R L , et al . J . Electrochem.Soc. , 2003 , 150 : A149 —A156
[52] Fleischauer M D , Topple J M, Dahna J R. Electrochem. Solid State Lett . , 2005 , 8 : A137 —A140
[53] Sakaguchi H , Toda T , Esaka T. Electrochem. , 2005 , 73 : 505 —508
[54] Xie J , Zhao X B , Cao G S , et al . J . Power Sources , 2005 , 140 :350 —354
[55] Dudney N J , Yang Y I. J . Power Sources , 2003 , 119 : 300 —304
[56] Rho Y H , Kanamura K, Fujisaki M, et al . Solid State Ionics ,2002 , 151 : 151 —157
[57] Jang Y I. J . Power Sources , 2003 , 119P121 : 295 —299
[58] Dudney N J . J . Power Sources , 2003 , 119P121 : 300 —304
[59] Vasanthi R , RuthMangani I , Manoravi P , et al . Scripta Mater. ,2004 , 50 : 1329 —1333
[60] Uchimoto Y, Arnezawa K, Furushita T , et al . Solid State Ionics ,2005 , 176 : 2377 —2381
[61] Kanamura K, Akutagawa N , Dokko K. J . Power Sources , 2005 ,146 : 86 —89
[62] Rho Y H , Kanamura K. J . Electroanal . Chem. , 2003 , 559 :69 —75
[63] Park Y J , KimJ G, Kim M K, et al . J . Power Sources , 1998 ,76 : 41 —47
[64] Dudney N J . Mater. Sci . Eng. B , 2005 , 116 : 245 —249
[65] Eftekhari A. J . Power Sources , 2004 , 132 : 240 —243
[66] Eftekhari A. J . Power Sources , 2003 , 124 : 182 —190
[67] Mohamedi M, Makino A , Dokko K, et al . Electrochim. Acta ,2002 , 48 : 79 —84
[68] Urbano A , de Castro S C , Landers R , et al . J . Power Sources ,2001 , 97/98 : 328 —331
[69] Kim H K, Seong T Y, Yoon Y S. Solid State Lett . , 2002 , 5 :A252 —A255
[70] Endo E , Yasuda T , Yamaura K, et al . J . Power Sources , 2001 ,93 : 87 —92
[71] Montorn L A , Abbate M, Almeida E C , et al . Chem. Phys.Lett . , 1999 , 309 : 14 —18
[72] Abbate M, de Groot F M F , Fuggle J C , et al . Phys. Rev. B ,1991 , 44 : 5419 —5422
[73] Kim H K, Seong T Y, Cho W, et al . J . Power Sources , 2002 ,109 : 178 —183
[74] Wang G X, Lindsay M J , Ionescu M, et al . J . Power Sources ,2001 , 97/98 : 298 —302
[75] Zhecheva E , Stoyanova R. Solid State Ionics , 1993 , 66 : 143 —149
[76] Yamada K, Sato N , Fujino T , et al . J . Solid State Electrochem. ,1999 , 3 : 148 —153
[77] Liu P , Lee S H , Tracy C E , et al . J . Power Sources , 2003 ,119 : 305 —309
[78] Kim Y T , Gopukumar S , Kim K B , et al . J . Power Sources ,2003 , 117 : 110 —117
[79] Wu Q H , Thissen A , Jaegermann W. Surf . Sci . , 2005 , 578 :203 —212
[80] Bates J B , Dudney N J , Gruzalski G R , et al . J . Power Sources ,1993 , 43 : 103 —110
[81] Passerini S , Chang D , Chu X, et al . Chem. Mater. , 1995 , 7 :780 —785
[82] Lee J M, Hwang H S , Cho W I , et al . J . Power Sources , 2004 ,136 : 122 —131
[83] Kim H K, Seong T Y, Yoon YS. J . Power Sources , 2002 , 112 :67 —75
[84] Huang F , Fu Z W, Qin Q Z. Electrochem. Commun. , 2003 , 5 :262 —266
[85] 储秋艳(Chu Y Q) , 黄峰(Huang F) , 亲启宗(Qin Q Z) . 化学物理学报(Chin. J . Chem. Phys. ) , 2002 , 15 : 193 —197
[86] Ohtsuka H , Sakurai Y. Solid State Ionics , 2001 , 144 : 59 —64
[87] Julien C M. Mater. Sci . Eng. R: Reports , 2003 , 40 : 47 —102
[88] Sugawara M, Kitada Y, Matsuki K. J . Power Sources , 1989 , 26 :373 —379
[89] Dong W, Dunn B. Ceram. Trans. , 2000 , 109 : 329 —339
[90] Yufit V , Nathan M, Golodnitsky D , et al . J . Power Sources ,2003 , 122 : 169 —173
[91] Yufit V , Freedman K, Nathan M, et al . Electrochim. Acta ,2004 , 50 : 417 —420
[92] Jones S D , Akridge J R. J . Power Sources , 1995 , 54 : 63 —67
[93] Martin2Litas I , Vinatier P , Levasseur A , et al . J . Power Sources ,2001 , 97/98 : 545 —547
[94] Deniard P , Dulac A M, Rocquefelte X, et al . J . Phys. Chem.Solids , 2004 , 65 : 229 —233
[95] 唐致远(Tang Z Y) , 韩彬(Han B) , 王健英(Wang J Y) 等. 电源技术(Chin. J . Power Sources) , 2005 , 29(8) : 556 —559
[96] Huang X, Ma J F , Wu P W, et al . Mater. Lett . , 2005 , 59 :578 —582
[97] West W C , Whitacre J F. J . Electrochem. Soc. , 2003 , 150 :A1660 —A1666
[98] Kanehori K, Matsumoto K, Miyauchi K, et al . Solid State Ionics ,1983 , 9/10 : 1445 —1448
[99] Levasseur A , Kbala M, Hagenmuller P , et al . Solid State Ionics ,1983 , 9/10 : 1439 —1444
[100] Creus R , Sarradin J , Astier R , et al . Mater. Sci . Eng. B ,1989 , 3 : 109 —112
[101] Jones S D , Akridge J R. J . Power Sources , 1995 , 64 : 63 —67
[102] Ohtsuka H , Sakurai Y. Solid State Ionics , 2001 , 144 : 59 —64
[103] Bates J B , Dudney N J , Gruzalski G R , et al . Solid State Ionics ,1992 , 53/56 : 647 —654
[104] Yu X H , Bates J B , Jellison G E Jr , et al . J . Electrochem.Soc. , 1997 , 144 : 524 —532
[105] Wang B , Bates J B , Hart F X, et al . J . Electrochem. Soc. ,1996 , 143 : 3203 —3213
[106] Zhao S L , Fu Z W, Qin Q Z. Thin Solid Films , 2002 , 415 :108 —113
[107] 刘文元(Liu W Y) , 傅正文(Fu Z W) , 秦启宗(Qin Q Z) . 化学学报(Acta Chim. Sinica) , 2004 , 62(22) : 2223 —2227
[108] Birke P , Chu W F , Weppner W. Solid State Ionics , 1997 , 93 :1 —15
[109] Ahn J K, Yoon S G. Electrochim. Acta , 2004 , 50 : 371 —374
[110] Bates J B , Dudney N J , Neudecker B , et al . Solid Stare Ionics ,2000 , 135 : 33 —45
[111] Neudecker B J , Dudney N J , Bates J B. J . Electrochem. Soc. ,2000 , 147 : 517 —523
[112] Balkanski M. Solar Energy Mater. Solar Cells , 2000 , 62 : 21 —35
[113] Hart R W, White H S , Bruce D , et al . Electrochem. Commun. ,2003 , 5 : 120 —123
[114] Nathan M, Golodnitsky D , Yufit V , et al . J .Microelectromechanical Sys. , 2005 , 14 : 879 —885

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Abstract

Solid-State Thin Film Li-ion Batteries