欢迎登录材料期刊网

材料期刊网

高级检索

全固态薄膜锂电池利用固态电解质替代传统电解液,采用多层薄膜堆垛的平面结构,属于新一代的锂离子电池,在军民两用的可穿戴设备、便携式移动电源、汽车和航空动力电池等领域应用前景广阔.该类电池因高安全性、长循环寿命、高比容量和高能量密度等优势性能受到业界广泛关注.本文概述薄膜锂电池的分类和充放电原理,总结正负极、电解质薄膜材料的发展历程和薄膜制备手段的改进,对比各类电池材料的电化学性能,引入该方向最新的研究进展:三维薄膜锂电池,可变形的柔性电池,高电压、大容量电池组.汇总国外商用电池产品、关键优势技术、电池制备设备,提出薄膜锂电池亟待解决的科学问题和国内潜在的产业化方向.

参考文献

[1] NOORDEN R V .The rechargeable revolution:a better battery[J].NATURE,2014,507:26-28.
[2] 崔玺康,杨洋.波音787停飞事件的影响及启示[C].2013年首届中国航空科学技术大会论文集,2013:1-8.
[3] 王薇 .特斯拉着火"烤”问电动车安全[N].中国保险报,2013-10-16.
[4] Ceramic and polymeric solid electrolytes for lithium-ion batteries[J].Journal of Power Sources,2010(15):p.4554.
[5] Bates JB.;Neudecker B.;Ueda A.;Evans CD.;Dudney NJ. .Thin-film lithium and lithium-ion batteries[J].Solid state ionics,2000(1/4):33-45.
[6] Dudney NJ .Solid-state thin-film rechargeable batteries[J].Materials Science & Engineering, B. Solid-State Materials for Advanced Technology,2005(3):245-249.
[7] KOO M;PARK K I;LEE S H et al.Bendable inorganic thin-film battery for fully flexible electronics systems[J].NANO LETTERS,2012,12(09):4810-4816.
[8] 刘晋,徐俊毅,林月,李劼,赖延清,袁长福,张锦,朱凯.全固态锂离子电池的研究及产业化前景[J].化学学报,2013(06):869-878.
[9] J.B. Bates;N.J. Dudney;D.C. Lubben;G.R. Gruzalski;B.S. Kwak;Xiaohua Yu;R.A. Zuhr .Thin-film rechargeable lithium batteries[J].Journal of Power Sources,1995(1):58-62.
[10] NEUDECKER B J;ZUHR R A;BATES J B .Lithium silicon tin oxynitride (LiySiTON):high-performance anode in thin-film lithium-ion batteries for microelectronics[J].Journal of Power Sources,1999,81/82:27-32.
[11] Neudecker B. J.;Dudney N.J. ."Lithium-Free" Thin-Film Battery with In Situ Plated Li Anode[J].Journal of the Electrochemical Society,2000(2):517-523.
[12] TARASCON J M;ARMAND M .Issues and challenges facing rechargeable lithium batteries[J].NATURE,2001,414:359-367.
[13] SCROSATI B .Recent advances in lithium solid state batteries[J].Journal of Applied Electrochemistry,1972,2(03):231-238.
[14] KANEHORI K;MATSUMOTO K;MIYAUCHI K et al.Thin film solid electrolyte and its application to secondary lithium cell[J].Solid State Ionicis,1983,9/10(02):1445-1448.
[15] BATES J B;DUDNEY N J;GRUZALSKI G R et al.Fabrication and characterization of amorphous lithium electrolyte thin films and rechargeable thin-film batteries[J].Journal of Power Sources,1993,43(1/3):103-110.
[16] ORNL's thin film lithium technology may power Christmas of the future[OL].http://www.ornl.gov/ornl/news/news-releases/2005/ornl-s-thin-film-lithium-technology-maypower-christmas-of-the-future
[17] Bates J.B.;Dudney N.J. .Preferred Orientation of Polycrystalline LiCoO_2 Films[J].Journal of the Electrochemical Society,2000(1):59-70.
[18] K.-F. Chiu .In Situ Modification of RF Sputter-Deposited Lithium Nickel Oxide Thin Films by Plasma Irradiation[J].Journal of the Electrochemical Society,2004(11):A1865-A1869.
[19] N.J.Dudney;J.B.Bates .Nanocrystalline LixMn2-yO4 Cathodes for Solid-State Thin-Film Rechargeable Lithium Batteries[J].Journal of the Electrochemical Society,1999(7):2455-2464.
[20] Hong J;Wang CS;Dudney NJ;Lance MJ .Characterization and performance of LiFePO4 thin-film cathodes prepared with radio-frequency magnetron-sputter deposition[J].Journal of the Electrochemical Society,2007(8):A805-A809.
[21] Yo Kobayashi;Hajime Miyashiro;Katsuhito Takei .5 V Class All-Solid-State Composite Lithium Battery with Li_3PO_4 Coated LiNi_(0.5)Mn_(1.5)O_4[J].Journal of the Electrochemical Society,2003(12):A1577-A1582.
[22] Yim, H.;Yeon Kong, W.;Chul Kim, Y.;Yoon, S.-J.;Choi, J.-W..Electrochemical properties of Li[Li _(0.2)Mn _(0.54)Co _(0.13)Ni _(0.13)]O _2 cathode thin film by RF sputtering for all-solid-state lithium battery[J].Journal of Solid State Chemistry,2012:288-292.
[23] Hirai K.;Takahashi M.;Minami T.;Tatsumisago M. .SI-29 AND P-31 MAS-NMR SPECTRA OF LI2S-SIS3-LI3PO4 RAPIDLY QUENCHED GLASSES[J].Journal of the American Ceramic Society,1996(2):349-352.
[24] HAYASHI A;HAMA S;MORIMOTO H et al.Preparation of Li2S2-P2O5 amorphous solid electrolytes by mechanical milling[J].Journal of the American Ceramic Society,2001,84(02):477-479.
[25] Takada K.;Fujimoto K.;Inada T.;Kajiyama AL.;Kouguchi M.;Kondo S. Watanabe M. .Sol-gel preparation of Li+ ion conductive thin film[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2002(3/4):300-306.
[26] BATES J B;DUDNEY N J;GRUZALSKI G R et al.Electrical properties of amorphous lithium electrolyte thin films[J].Solid State Ionicis,1992,53/56:647-654.
[27] HAYRI E A;GREENBLATT M .The preparation and ionic conductivity of sol-gels in the Li2O-P2O5-SiO2 system[J].JOURNAL OF NON-CRYSTALLINE SOLIDS,1987,94(03):387-401.
[28] AONO H;SUGIMOTO E;SADAOKA Y et al.Ionic conductivity of solid electrolytes based on lithium titanium phosphate[J].Journal of the Electrochemical Society,1990,137(04):1023-1027.
[29] Fernado Vereda;Ronald B. Goldner;Terry E. Haas .Rapidly Grown IBAD LiPON Films with High Li-Ion Conductivity and Electrochemical Stability[J].Electrochemical and solid-state letters,2002(11):A239-A241.
[30] VEREDA F;CLAY N;GEROUKI A et al.A study of electronic shorting in IBDA-deposited LiPON films[J].Journal of Power Resources,2000,89(02):201-205.
[31] Hong Tak Kim;Taehong Mun;Chinho Park;Sang Wan Jin;Ho Young Park .Characteristics of lithium phosphorous oxynitride thin films deposited by metal-organic chemical vapor deposition technique[J].Journal of Power Sources,2013(Dec.15):641-645.
[32] 赵胜利 .用于全固态锂电池的无机电解质薄膜制备与性能研究[D].复旦大学,2003.
[33] Seung-Joo Lee;Hong Koo Baik;Sung-Man Lee .An all-solid-state thin film battery using LISIPON electrolyte and Si-V negative electrode films[J].Electrochemistry communications,2003(1):32-35.
[34] Jun-Ku Ahn;Soon-Gil Yoon .Characteristics of Amorphous Lithium Lanthanum Titanate Electrolyte Thin Films Grown by PLD for Use in Rechargeable Lithium Microbatteries[J].Electrochemical and solid-state letters,2005(2):A75-A78.
[35] DAVISON J;BOYCE J .Low cost,novel methods for fabricating all-solid-state lithium ion batteries[OL].http://www.wpi.edu/Pubs/E-project/Available/E-project042312-141301/unrestricted/SS_ Lithium _ Ion _ Battery _MQP_Final_Report.pdf
[36] OZER N;LAMPERT C M .Electrochemical lithium insertion in sol-gel deposited LiNbO3 films[J].Solar Energy Materials and Solar Cells,1995,39(2/4):367-375.
[37] GLASS A M;NASSAU K;NEGRAN T J .Ionic conductivity of quenched alkali niobate and tantalite glasses[J].Journal of Applied Physics,1978,49:4808.
[38] Li ZY.;Hu XF.;Chen XF. .THE PREPARATION AND IONIC CONDUCTANCE OF NANO-AMORPHOUS LIXTAOY THIN FILM[J].Journal of Physics, D. Applied Physics: A Europhysics Journal,1996(11):2740-2744.
[39] KROL R;GOOSSENS A;MEULENKAMP E A .In situ Xray diffraction of lithium intercalation in nanostructured and thin film anatase TiO2[J].Journal of the Electrochemical Society,1999,146(09):3150-3154.
[40] COLBOW K M;DAHN J R;HAERING R R .Structure and electrochemistry of the spinel oxides LiTi2O4 and Li4/3 Ti5/3O4[J].Journal of Power Sources,1989,26(3/4):397-402.
[41] Uday Kasavajjula;Chunsheng Wang;A. John Appleby .Nano- and bulk-silicon-based insertion anodes for lithium-ion secondary cells[J].Journal of Power Sources,2007(2):1003-1039.
[42] GOWARD G R;TAYLOR N J;SOUZA D C S et al.The true crystal structure of Li17M4 (M =Ge,Sn,Pb)-revised from Li22M5[J].Journal of Alloys and Compounds,2001,329(1/2):82-91.
[43] POIZOT P;LARUELLE S;GRUGEON S et al.Nanosized transition-metal oxides as negative electrode materials for lithium-ion batteries[J].NATURE,2000,407:496-499.
[44] LI H;WANG Z X;CHEN L Q et al.Research on advanced materials for Li-ion batteries[J].Advanced Materials,2009,21(45):4593-4607.
[45] Hong Li;Palani Balaya;Joachim Maier .Li-Storage via Heterogeneous Reaction in Selected Binary Metal Fluorides and Oxides[J].Journal of the Electrochemical Society,2004(11):A1878-A1885.
[46] Loi'c Baggetto;Nynke A. M. Verhaegh;Rogier A. H. Niessen .Tin Nitride Thin Films as Negative Electrode Material for Lithium-Ion Solid-State Batteries[J].Journal of the Electrochemical Society,2010(3):A340-A347.
[47] N. Pereira;L. C. Klein;G. G. Amatucci .The Electrochemistry of Zn_3N_2 and LiZnN A Lithium Reaction Mechanism for Metal Nitride Electrodes[J].Journal of the Electrochemical Society,2002(3):A262-A271.
[48] N. Pereira;M. Balasubramanian;L. Dupont .The Electrochemistry of Germanium Nitride with Lithium[J].Journal of the Electrochemical Society,2003(8):A1118-A1128.
[49] Courtney IA.;Dahn JR. .ELECTROCHEMICAL AND IN SITU X-RAY DIFFRACTION STUDIES OF THE REACTION OF LITHIUM WITH TIN OXIDE COMPOSITES[J].Journal of the Electrochemical Society,1997(6):2045-2052.
[50] Wang B.;Hart FX.;Sales BC.;Zuhr RA.;Robertson JD.;Bates JB. .CHARACTERIZATION OF THIN-FILM RECHARGEABLE LITHIUM BATTERIES WITH LITHIUM COBALT OXIDE CATHODES[J].Journal of the Electrochemical Society,1996(10):3203-3213.
[51] T. Matsushita;K. Dokko;K. Kanamura .Comparison of Electrochemical Behavior of LiCoO_2 Thin Films Prepared by Sol-Gel and Sputtering Processes[J].Journal of the Electrochemical Society,2005(11):A2229-A2237.
[52] P. J. Bouwman;B. A. Boukamp;H. J. M. Bouwmeester .Structural Analysis of Submicrometer LiCoO_2 Films[J].Journal of the Electrochemical Society,2001(4):A311-A317.
[53] Takaya Kubo;Yoshinori Nishikitani;Yuko Sawai .Electrochromic Properties of Li_xNi_yO Films Deposited by RF Magnetron Sputtering[J].Journal of the Electrochemical Society,2009(8):629-633.
[54] FRAGNAUD P;NAGARAJAN R;SCHLEICH D M et al.Thin-film cathodes for secondary lithium batteries[J].Journal of Power Sources,1995,54(02):362-366.
[55] CHIU K F;CHEN P Y .Structural evolution and electrochemical performance of LiFePO4/C thin film deposited by ionized magnetron sputtering[J].Surface and Coattings Technology,2008,203(5/7):872-875.
[56] Eftekhari A .Electrochemical deposition and modification of LiFePO4 for the preparation of cathode with enhanced battery performance[J].Journal of the Electrochemical Society,2004(11):A1816-A1819.
[57] W. C. West;J. F. Whitacre;B. V. Ratnakumar .Radio Frequency Magnetron-Sputtered LiCoPO_4 Cathodes for 4.8 V Thin-Film Batteries[J].Journal of the Electrochemical Society,2003(12):A1660-A1666.
[58] N. Kumagai;H. Kitamoto;M. Baba;S. Durand-Vidal;D. Devilliers;H. Groult .Intercalation of lithium in r.f.-sputtered vanadium oxide film as an electrode material for lithium-ion batteries[J].Journal of Applied Electrochemistry,1998(1):41-48.
[59] BENAISSA K;ASHRIT P V;BADER G et al.Electrical and optical properties of LiNbO3[J].THIN SOLID FILMS,1992,214(02):219-222.
[60] SAITO Y;SHIOSAKI T .Heteroepitaxial growth of LiTaO3 single-crystal films by RF magnetron sputtering[J].Japanese Journal of Applied Physics,1991,30:2204-2207.
[61] LOBL P;HUPPERTZ M;MERGEL D .Nucleation and growth in TiO2 films prepared by sputtering and evaporation[J].THIN SOLID FILMS,1994,251(01):72-79.
[62] SUHAIL M H;RAO G M;MOHAN S .DC reactive magnetron sputtering of titanium-structural and optical characterization of TiO2 films[J].Journal of Applied Physics,1992,71:1421.
[63] C.-L. Wang;Y. C. Liao;F. C. Hsu .Preparation and Characterization of Thin Film Li_4Ti_5O_(12) Electrodes by Magnetron Sputtering[J].Journal of the Electrochemical Society,2005(4):A653-A657.
[64] Li CL;Zhang B;Fu ZW .Physical and electrochemical characterization of amorphous lithium lanthanum titanate solid electrolyte thin-film fabricated by e-beam evaporation[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2006(4):1886-1892.
[65] 刘文元 .全固态薄膜锂电池的制备及电化学性能研究[D].复旦大学,2005.
[66] P. J. Bouwman;B. A. Boukamp;H. J. M. Bouwmeester .Structural Analysis of Submicrometer LiCoO_2 Films[J].Journal of the Electrochemical Society,2001(4):A311-A317.
[67] WEN S J;ROTTKAY K;RUBIN M .Electrochromic lithium nickel oxide thin film by pulsed laser deposition[J].Proceedings Volumes:The Electrochemical Society,1997,96(24):54-63.
[68] Striebel KA.;Wen SJ.;Cairns EJ.;Deng CZ. .ELECTROCHEMICAL BEHAVIOR OF LIMN2O4 AND LICOO2 THIN FILMS PRODUCED WITH PULSED LASER DEPOSITION[J].Journal of the Electrochemical Society,1996(6):1821-1827.
[69] Y. Iriyama;M. Yokoyama;C. Yada .Preparation of LiFePO_4 Thin Films by Pulsed Laser Deposition and Their Electrochemical Properties[J].Electrochemical and solid-state letters,2004(10):A340-A342.
[70] F. Sauvage;E. Baudrin;M. Morcrette .Pulsed Laser Deposition and Electrochemical Properties of LiFePO_4 Thin Films[J].Electrochemical and solid-state letters,2004(1):A15-A18.
[71] RAMANA C V;SMITH R J;HUSSAIN O M et al.Growth and surface characterization of V2O5 thin films made by pulsed laser deposition[J].Journal of Vacuum Science & Technology:A,2004,22:2453.
[72] R. M. Bowman;J. M. Gregg .VO2 thin films: growth and the effect of applied strain on their resistance[J].Journal of Materials Science. Materials in Electronics,1998(3):187-191.
[73] Shengli Zhao;Zhengwen Fu;Qizong Qin .A solid-state electrolyte lithium phosphorus oxynitride film prepared by pulsed laser deposition[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2002(1/2):108-113.
[74] AHN J K;YOON S G .Characteristics of perovskite (Li0.5La0.5)TiO3 solid electrolyte thin films grown by pulsed laser deposition for rechargeable lithium microbattery[J].Electrochimica Acta,2004,50(2/3):371-374.
[75] MARSH A M;HARKNESS S D;QIAN F et al.Pulsed laser deposition of high quality LiNbO3 films on sapphire substrates[J].Applied Physics Letters,1993,62(09):952.
[76] AGOSTINELLI J A;BRAUNSTEIN G H;BLANTON T N .Epitaxial LiTaO3 thin films by pulsed laser deposition[J].Applied Physics Letters,1993,63:123.
[77] S. Yamamoto;T. Sumita;A. Miyashita .Preparation of epitaxial TiO_2 films by pulsed laser deposition technique[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2001(1/2):88-93.
[78] DENG J Q;LU Z G;BELHAROUAK I et al.Preparation and electrochemical properties of Li3Ti5O12 thin film electrodes by pulsed laser deposition[J].Journal of Power Sources,2009,193(02):816-821.
[79] Kohta Yamada;Nobuaki Sato;Takeo Fujino;Choong G. Lee;Isamu Uchida;Jan R. Selman .Preparation of LiNiO_2 and LiM_y Ni_(1-y)O_2 (M=Co, Al) films by electrostatic spray deposition[J].Journal of solid state electrochemistry,1999(3):148-153.
[80] Shui JL;Yu Y;Yang XF;Chen CH .LiCoPO4-based ternary composite thin-film electrode for lithium secondary battery[J].Electrochemistry communications,2006(7):1087-1091.
[81] Jun Ma;Qi-Zong Qin .Electrochemical performance of nanocrystalline LiMPO_4 thin-films prepared by electrostatic spray deposition[J].Journal of Power Sources,2005(0):66-71.
[82] Kushida K.;Kuriyama K. .Sol-gel growth of LiCoO2 films on Si substrates by a spin-coating method[J].Journal of Crystal Growth,2002(Pt.1):612-615.
[83] PENG Z S;WAN C R;JIANG C Y .Synthesis by sol-gel process and characterization of LiCoO2 cathode materials[J].Journal of Power Sources,1998,72(02):215-220.
[84] Rho YH;Kanamura K .Li+-ion diffusion in LiCoO2 thin film prepared by the poly(vinylpyrrolidone) sol-gel method[J].Journal of the Electrochemical Society,2004(9):A1406-A1411.
[85] SVEGL F;OREL B;KAUCIC V .Electrochromic properties of lithiated Co-oxide (LixCoO2) and Ni-oxide (LixNiO2) thin films prepared by the sol-gel route[J].SOLAR ENERGY,2000,68(06):523-540.
[86] PARK Y J;KIM J G;KIM M K et al.Fabrication of LiMn2O4 thin films by sol-gel method for cathode materials of microbattery[J].Journal of Power Sources,1998,76(01):41-47.
[87] Young Ho Rho;Kaoru Dokko;Kiyoshi Kanamura .Li~+ ion diffusion in LiMn_2O_4 thin film prepared by PVP sol-gel method[J].Journal of Power Sources,2006(1):471-476.
[88] Y. Hu;M. M. Doeff;R. Kostecki .Electrochemical Performance of Sol-Gel Synthesized LiFePO_4 in Lithium Batteries[J].Journal of the Electrochemical Society,2004(8):A1279-A1285.
[89] Hsu KF;Tsay SY;Hwang BJ .Synthesis and characterization of nano-sized LiFePO4 cathode materials prepared by a citric acid-based sol-gel route[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2004(17):2690-2695.
[90] J. Yang;J.J. Xu .Nonaqueous Sol-Gel Synthesis of High-Performance LiFePO_4[J].Electrochemical and solid-state letters,2004(12):A515-A518.
[91] R. Dominko;M. Bele;M. Gaberscek .Impact of the Carbon Coating Thickness on the Electrochemical Performance of LiFePO_4/C Composites[J].Journal of the Electrochemical Society,2005(3):A607-A610.
[92] Vincent Vivier;Jacqueline Farcy;Jean-Pierre;Pereira-Ramos .Electrochemical lithium insertion in sol-gel crystalline vanadium pentoxide thin films[J].Electrochimica Acta,1998(5):831-839.
[93] Meulenkamp Eric A.;Schlatmann A.R.;van Klinken W. .In-situ X-ray diffraction of Li intercalation in sol-gel V_2O_5 films[J].Solid state ionics,1999(3/4):235-244.
[94] Kitaoka K.;Hashimoto T.;Yoko T.;Kozuka H. .PREPARATION OF LA0.5LI0.5TIO3 PEROVSKITE THIN FILMS BY THE SOL-GEL METHOD[J].Journal of Materials Science,1997(8):2063-2070.
[95] NASHIMOTO K;CIMA M J .Epitaxial LiNbO3 thin films prepared by a sol-gel process[J].Materials Letters,1991,10(07):348-354.
[96] DEIST A;PHULE P P .Preparation of oriented lithium tantalate thin films using molecularly modified tantalum (V) ethoxide and lithium acetate[J].Journal of Materials Science Letters,1992,11(20):1353-1355.
[97] YOKO T;YUASA A;KAMIYA K et al.Sol-gel-derived TiO2 film semiconductor electrode for photocleavage of water preparation and effects of postheating treatment on the photoelectrochemical behavior[J].Journal of the Electrochemical Society,1991,138(08):2279-2285.
[98] Rho YH.;Kanamura K.;Fujisaki M.;Hamagami J.;Suda S.;Umegaki T. .Preparation of Li4Ti5O12 and LiCoO2 thin film electrodes from prcursors obtained by sol-gel method[J].Solid state ionics,2002(1/4):151-157.
[99] Improvement of discharge capacity of LiCoO_(2) thin-film cathodes deposited in trench structure by liquid-delivery metalorganic chemical vapor deposition[J].Applied physics letters,2003(19):3345-3347.
[100] Sang-In Cho;Soon-Gil Yoon .Characterization of LiCoO_2 Thin Film Cathodes Deposited by Liquid-Delivery Metallorganic Chemical Vapor Deposition for Rechargeable Lithium Batteries[J].Journal of the Electrochemical Society,2002(12):A1584-A1588.
[101] FRAGNAUD P;NAGARAJAN R;SCHLEICH D M et al.Thin-film cathodes for secondary lithium batteries[J].Journal of Power Sources,1995,54(02):362-366.
[102] KUYPERS A D;SPEE C;LINDEN J L et al.Plasmaenhanced CVD of electrochromic materials[J].Surface and Coatings Technology,1995,74/75:1033-1037.
[103] WERNBERG A A;GYSLING H J;FILO A J et al.Epitaxial growth of lithium niobate thin films from a single-source organometallic precursor using metalorganic chemical vapor deposition[J].Applied Physics Letters,1993,62(09):946-948.
[104] XIE H Y;RAJ R .Epitaxial LiTaO3 thin film by pulsed metalorganic chemical vapor deposition from a single precursor[J].Applied Physics Letters,1993,63(23):3146-3148.
[105] JUNG H J;PARK M;YOON Y G et al.Amorphous silicon anode for lithium-ion rechargeable batteries[J].Journal of Power Sources,2003,115:346-351.
[106] Jung HJ.;Park M.;Han SH.;Lim H.;Joo SK. .Amorphous silicon thin-film negative electrode prepared by low pressure chemical vapor deposition for lithium-ion batteries[J].Solid State Communications,2003(7/8):387-390.
[107] RAUSCH N;BURTE E P .Thin TiO2 films prepared by low pressure chemical vapor deposition[J].Journal of the Electrochemical Society,1993,140(01):145-149.
[108] NEUDECKER B J;ZUHR R A;BATES J B.Lithium thin-film batteries with Sn3N4,Zn3N2,and in situ plated Li anodes[A].USA:Seattle,1999:841-843.
[109] Yong-Ning Zhou;Ming-Zhe Xue;Zheng-Wen Fu .Nanostructured thin film electrodes for lithium storage and all-solid-state thin-film lithium batteries[J].Journal of Power Sources,2013(Jul.15):310-332.
[110] OUDENHOVEN J F M;BAGGETTO L;NOTTEN P H L .All-solid-state lithium-ion microbatteries:a review of various three-dimensional concepts[J].Advanced Energy Materials,2011,1:10-33.
[111] Baggetto L;Niessen RAH;Roozeboom F;Notten PHL .High energy density all-solid-state batteries: A challenging concept towards 3D integration[J].Advanced functional materials,2008(7):1057-1066.
[112] Notten PHL;Roozeboom F;Niessen RAH;Baggetto L .3-D integrated all-solid-state rechargeable batteries[J].Advanced Materials,2007(24):4564-4567.
[113] Golodnitsky D;Nathan M;Yufit V;Strauss E;Freedman K;Burstein L;Gladkich A;Peled E .Progress in three-dimensional (3D) Li-ion microbatteries[J].Solid state ionics,2006(26/32):2811-2819.
[114] Menachem Nathan;Diana Golodnitsky;Vladimir Yufit;Ela Strauss;Tania Ripenbein;Inna Shechtman;Svetlana Menkin;Emanuel Peled .Three-Dimensional Thin-Film Li-Ion Microbatteries for Autonomous MEMS[J].Journal of Microelectromechanical Systems: A Joint IEEE and ASME Publication on Microstructures, Microactuators, Microsensors, and Microsystems,2005(5):879-885.
[115] Perre E;Nyholm L;Gustafsson T;Taberna PL;Simon P;Edstrom K .Direct electrodeposition of aluminium nano-rods[J].Electrochemistry communications,2008(10):1467-1470.
[116] LEOPOLD S;SCHUCHERT I U;LU J et al.Electrochemical deposition of cylindrical Cu/Cu2O microstructures[J].Electrochimica Acta,2002,47(27):4393-4397.
[117] Chunlei Wang;Guangyao Jia;Lili H. Taherabadi;Marc J. Madou .A Novel Method for the Fabrication of High-Aspect Ratio C-MEMS Structures[J].Journal of Microelectromechanical Systems: A Joint IEEE and ASME Publication on Microstructures, Microactuators, Microsensors, and Microsystems,2005(2):348-358.
[118] Hong-Seok Min;Benjamin Y. Park;Lili Taherabadi;Chunlei Wang;Yuting Yeh;Rabih Zaouk;Marc J. Madou;Bruce Dunn .Fabrication and properties of a carbon/polypyrrole three-dimensional microbattery[J].Journal of Power Sources,2008(2):795-800.
[119] Dae-Hyeong Kim;Jong-Hyun Ahn;Won Mook Choi;Hoon-Sik Kim;Tae-Ho Kim;Jizhou Song;Yonggang Y. Huang;Zhuangjian Liu;Chun Lu;John A. Rogers .Stretchable and Foldable Silicon Integrated Circuits[J].Science,2008(5875):507-511.
[120] Hyeokjo Gwon;Jihyun Hong;Haegyeom Kim;Dong-Hwa Seo;Seokwoo Jeon;Kisuk Kang .Recent progress on flexible lithium rechargeable batteries[J].Energy & environmental science: EES,2014(2):538-551.
[121] ZHOU G M;LI F;CHENG H M .Progress in flexible lithium batteries and future prospects[J].Energy & Environmental Science,2014,7(04):1307-1338.
[122] Min Koo;Kwi-ll Park;Seung Hyun Lee;Minwon Suh;Duk Young Jeon;Jang Wook Choi;Kisuk Kang;Keon Jae Lee .Bendable Inorganic Thin-Film Battery for Fully Flexible Electronic Systems[J].Nano letters,2012(9):4810-4816.
[123] Sekitani T;Iba S;Kato Y;Noguchi Y;Someya T;Sakurai T .Ultraflexible organic field-effect transistors embedded at a neutral strain position[J].Applied physics letters,2005(17):3502-1-3502-3-0.
[124] Seung-Wan Song;Hyun Choi;Ho Young Park;Gi Back Park;Ki Chang Lee;Ha-Jin Lee .High rate-induced structural changes in thin-film lithium batteries on flexible substrate[J].Journal of Power Sources,2010(24):8275-8279.
[125] Seung-Wan Song;Sung-Jin Hong;Ho Young Park;Young Chang Lim;Ki Chang Lee .Cycling-Driven Structural Changes in a Thin-Film Lithium Battery on Flexible Substrate[J].Electrochemical and solid-state letters,2009(8):A159-A162.
[126] S.Lee;P.Liu .All-Solid-State Rocking Chair Lithium Battery on a Flexible Al Substrate[J].Electrochemical and solid-state letters,1999(9):425-427.
[127] Li, N.;Chen, Z.;Ren, W.;Li, F.;Cheng, H.-M. .Flexible graphene-based lithium ion batteries with ultrafast charge and discharge rates[J].Proceedings of the National Academy of Sciences of the United States of America,2012(43):17360-17365.
[128] NAKAZAWA H;SANO K;BABA M .Fabrication by using a sputtering method and charge-discharge properties of large-sized and thin-filmed lithium ion rechargeable batteries[J].Journal of Power Sources,2005,146(01):758-761.
[129] Y.Park;S.Lee .All-Solid-State Lithium Thin-Film Rechargeable Battery with Lithium Manganese Oxide[J].Electrochemical and solid-state letters,1999(2):58-59.
[130] M. Baba;N. Kumagai;H. Fujita;K. Ohta;K. Nishidate;S. Komaba;B. Kaplan;H. Groult;D. Devilliers .Multi-layered Li-ion rechargeable batteries for a high-voltage and high-current solid-state power source[J].Journal of Power Sources,2003(119/121):914-917.
[131] Thin film solid state battery,printed battery,and smarter computing market shares,strategies,and forecasts[OL].http://wintergreenresearch.com/reports/ThinFilmBatteries.htm
[132] Recharge solid state bare die batteries[OL].http://www.cymbet.com/pdfs/DS-72-41.pdf
[133] Organic-free,All-solid-state Thin Film Batteries for Cell Phones,Tablets,and Future Devices[OL].http://www.batterypoweronline.com/main/white/organic-freeall-solid-state-thin-film-batteries-for-cell-phones-tabletsand-future-devices/
[134] 陈梅.利用常温工艺的全固体薄膜锂电池试制成功[J].电源技术,2011(05):487-488.
[135] Fabrication of an All-solid-state Thin Film Lithium-ion Batery Prototype Using a Room Temperature Process[OL].http://www.aist.go.jp/aist_ e/latest_ research/2010/20101224/20101224.html
[136] JIMBO T;KIM P;SUU K .Production technology for thin-film lithium secondary battery[J].Energy Procedia,2012,14:1574-1579.
[137] JEON J;SHIN Y W;NAM S C et al.Characterization of all-solid-state thin-film batteries with V2O5 thin film cathodes[J].Journal of the Electrochemical Society,2001,148(04):A318-A322.
[138] Michel Martin;Frederic Faverjon .A multilayer semi-industrial vacuum deposition equipment for producing ultrathin batteries[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2001(0):572-574.
[139] 秦启宗;傅正文;刘文元 .一种原位沉积制备全固态薄膜锂电池的设备和方法[P].中国,1747217A,2006-03-15.
[140] Wen-Yuan Liu;Zheng-Wen Fu;Qi-Zong Qin .A sequential thin-film deposition equipment for in-situ fabricating all-solid-state thin film lithium batteries[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2007(7/8):4045-4048.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%