欢迎登录材料期刊网

材料期刊网

高级检索

全固态三维薄膜锂离子电池能量密度高、自放电率低、充放电循环性能优良、安全可靠,可以设计成任意形状集成至微电子器件中,是最具前景的微电池之一.从电池构架角度,对全固态3D薄膜锂电池进行分类并概述其发展现状,分析了不同构架3D电池的优势和存在的问题,同时展望了薄膜电池的发展方向和应用前景.

参考文献

[1] 赵胜利,祝要民,王顺兴,李谦,秦启宗.全固态无机薄膜锂电池近期发展动态[J].功能材料,2005(08):1142-1145.
[2] 刘文元,王旭辉,李驰麟,傅正文.全固态薄膜锂/锂离子电池的研究进展[J].化学研究与应用,2007(09):953-958.
[3] 宋杰,吴启辉,董全峰,郑明森,吴孙桃,孙世刚.全固态薄膜锂离子电池[J].化学进展,2007(01):66-73.
[4] Nancy J. Dudney .Thin Film Micro-Batteries[J].The Electrochemical Society interface,2008(3):44-47.
[5] 崔艳华 .全固态薄膜锂离子电池新型电极材料的研究[D].绵阳:中国工程物理研究院,2010.
[6] Patil A;Patil V;Wook Shin D et al.Issue and challenges facing reehargeable thin film lithium batteries[J].Materials Research Bulletin,2008,43:1913.
[7] Bruce Dunn;Jeffrey W.Long;Debra R. Rolison .Rethinking Multifunction in Three Dimensions for Miniaturizing Electrical Energy Storage[J].The Electrochemical Society interface,2008(3):49-53.
[8] Debra R. Rolison;Jeffrey W. Long;Justin C. Lytle .Multifunctional 3D nanoarchitectures for energy storage and conversion[J].Chemical Society Reviews,2009(1):226-252.
[9] Matthew Roberts;Phil Johns;John Owen .3D lithium ion batteries-from fundamentals to fabrication[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2011(27):9876-9890.
[10] Chunlei Wang;Lili Taherabadi;Guangyao Jia .C-MEMS for the Manufacture of 3D Microbatteries[J].Electrochemical and solid-state letters,2004(11):A435-A438.
[11] 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.
[12] Genis Turon Teixidor;Rabih B. Zaouk;Benjamin Y. Park;Marc J. Madou .Fabrication And Characterization Of Three-dimensional Carbon Electrodes For Lithium-ion Batteries[J].Journal of Power Sources,2008(2):730-740.
[13] Chen, W.;Beidaghi, M.;Penmatsa, V.;Bechtold, K.;Kumari, L.;Li, W. Z.;Wang, C. .Integration of Carbon Nanotubes to C-MEMS for On-chip Supercapacitors[J].IEEE transactions on nanotechnology,2010(6):734-740.
[14] Nathan M;Peled E;Haronian D .Micro electrochemical energy storage cells[P].US Pat 6197450,2001.
[15] Golodnitsky D;Yufit V;Nathan M et al.Advanced materials for the 3D microbattery[J].Journal of Power Sources,2006,153:281.
[16] 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.
[17] 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.
[18] Peter H L Notten;Fred Roozeboom;Rogier A H Niessen et al.3-D integrated all-solid-state rechargeable batteries[J].Advanced Materials,2007,19:4564.
[19] L(o)ic Baggetto;Rogier A H Niessen;Fred Roozeboom et al.High energy density all-solid-state batteries:A challenging concept towards 3D integration[J].Advanced Functional Materials,2008,18:1057.
[20] Loic Baggetto;Harm C. M. Knoops;Rogier A. H. Niessen .3D negative electrode stacks for integrated all-solid-state lithium-ion microbatteries[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2010(18):3703-3708.
[21] Baggetto L;Oudenhoven J F M;van Dongen T et al.On the electrochemistry of an anode stack for all-solid-state 3Dintegrated batteries[J].Journal of Power Sources,2009,189:402.
[22] Ripenbeina T;Golodnitsky D;Nathana M et al.Novel porous-silicon structures for 3D-inter1laced microbatteries[J].Electrochimica Acta,2010,56:37.
[23] Jason L Goldman;Brandon R. Long;Andrew A. Gewirth;Ralph G. Nuzzo .Strain Anisotropies and Self-Limiting Capacities in Single-Crystalline 3D Silicon Microstructures: Models for High Energy Density Lithium-Ion Battery Anodes[J].Advanced functional materials,2011(13):2412-2422.
[24] Taberna L;Mitra S;Poizot P;Simon P;Tarascon JM .High rate capabilities Fe3O4-based Cu nano-architectured electrodes for lithium-ion battery applications[J].Nature materials,2006(7):567-573.
[25] Cheah, SK;Perre, E;Rooth, M;Fondell, M;Harsta, A;Nyholm, L;Boman, M;Gustafsson, T;Lu, J;Simon, P;Edstrom, K .Self-Supported Three-Dimensional Nanoelectrodes for Microbattery Applications[J].Nano letters,2009(9):3230-3233.
[26] L. Bazin;S. Mitra;P.L. Taberna;P. Poizot;M. Gressier;M. J. Menu;A. Barnabe;P. Simon;J.-M. Tarascon .High Rate Capability Pure Sn-based Nano-architectured Electrode Assembly For Rechargeable Lithium Batteries[J].Journal of Power Sources,2009(2):578-582.
[27] Shaijumon MM;Ou FS;Ci LJ;Ajayan PM .Synthesis of hybrid nanowire arrays and their application as high power supercapacitor electrodes[J].Chemical communications,2008(20):2373-2375.
[28] Reddy, ALM;Shaijumon, MM;Gowda, SR;Ajayan, PM .Coaxial MnO2/Carbon Nanotube Array Electrodes for High-Performance Lithium Batteries[J].Nano letters,2009(3):1002-1006.
[29] Sanketh R Gowda;Arava Leela Mohana Reddy;Manikoth M Shaijumon et al.Conformal coating of thin polymer electrolyte layer on nanostructured electrode materials for threedimensional battery applications[J].Nano Letters,2011,11:101.
[30] JEFFREY W.LONG;DEBRA R.ROLISON .Architectural Design,Interior Decoration,and Three-Dimensional Plumbing en Route to Multifunctional Manoarchitectures[J].Accounts of Chemical Research,2007(9):854-862.
[31] Christopher P Rhodes;Jeffrey W Long;Michael S Doescher et al.Charge insertion into hybrid nanoarchitectures:Mesoporous manganese oxide coated with ultrathin poly (phenylene oxide)[J].Journal of Non-Crystalline Solids,2003,50(15):73.
[32] Young Kyu Cho;Ryan Wartena;Steven M Tobias et al.Self-assembling colloidal-scale devices:Selecting and using short-range surface forces between conductive solids[J].Advanced Functional Materials,2007,17:379.
[33] George S Attard;Joanna C Glyde;Christine G G(o)ltner .Liquid-crystalline phases as templates for the synthesis of mesoporous silica[J].Nature,1995,378:366.
[34] George S Attard;Philip N Bartlett;Nicholas R B Coleman et al.Mesoporous platinum films from lyotropic liquid crystalline phases[J].Science,1997,278:838.
[35] Whitehead A H;Elliott J M;Owen J R .Nanostructured tin for use as a negative electrode material in Li-ion batteries[J].Journal of Power Sources,1999,81(82):33.
[36] Lang, X.;Hirata, A.;Fujita, T.;Chen, M. .Nanoporous metal/oxide hybrid electrodes for electrochemical supercapacitors[J].Nature nanotechnology,2011(4):232-236.
[37] Yu Yan;Gu Lin;Lang Xingyou et al.Li storage 3D nanoporous Au-supported nanocrystalline tin[J].Advanced Materials,2011,23:2443.
[38] Ki Tae Nam;Dong Wan Kim;Pil J Yoo et al.Virus enabled synthesis and assembly of nanowires for lithium ion battery electrodes[J].Science,2006,312:885.
[39] Lee SY;Choi JW;Royston E;Janes DB;Culver JN;Harris MT .Deposition of platinum clusters on surface-modified tobacco mosaic virus[J].Journal of nanoscience and nanotechnology,2006(4):974-981.
[40] Tseng R J;Tsai C L;Ouyang J Y et al.Digtal memory device based on tobacco mosaic virus conjugated with nanoparticles[J].Nat Nanotechn,2006,1:72.
[41] Keren K;Berman RS;Buchstab E;Sivan U;Braun E .DNA-templated carbon nanotube field-effect transistor[J].Science,2003(5649):1380-1382.
[42] Lee Y J;Yi H;Kim W J et al.Fabricating genetically engineered high-power lithium-ion batteries using multiple virus genes[J].Science,2009,324:1051.
[43] Nam, KT;Wartena, R;Yoo, PJ;Liau, FW;Lee, YJ;Chiang, YM;Hammond, PT;Belcher, AM .Stamped microbattery electrodes based on self-assembled M13 viruses[J].Proceedings of the National Academy of Sciences of the United States of America,2008(45):17227-17231.
[44] Chen, X.;Gerasopoulos, K.;Guo, J.;Brown, A.;Wang, C.;Ghodssi, R.;Culver, J.N. .Virus-enabled silicon anode for lithium-ion batteries[J].ACS nano,2010(9):5366-5372.
[45] Xilin Chen;Konstantinos Gerasopoulos;Juchen Quo;Adam Brown;Chunsheng Wang;Reza Ghodssi;James N. Culver .A Patterned 3D Silicon Anode Fabricated by Electrodeposition on a Virus-Structured Current Collector[J].Advanced functional materials,2011(2):380-387.
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%