欢迎登录材料期刊网

材料期刊网

高级检索

综述了目前国内外二次电池材料的研究进展,介绍了面向当前高容量、高功率新型二次电池的发展需求,以镍氢电池、锂离子电池为代表的绿色二次电池关键材料的制备及性能的最新研究成果,并对基于多电子反应机理的新型二次电池材料的发展趋势及应用前景进行了分析.

参考文献

[1] Wu J B;Tu J P;Tu T A et al.High-Rate Dischargeability Enhancement of Ni/MH Rechargeable Batteries by Addition of Nanoscale CoO to Positive Electrodes[J].Journal of Power Sources,2006,156:667-672.
[2] 唐金红,陈实,王芳,吴锋.镍氢电池掺钴镍正极的研究进展[J].功能材料,2007(05):696-699.
[3] 夏永姚 .高能二次电池开发的现状和展望[J].新材料产业,2003,118(09):16-22.
[4] Dhar S K;Fetcenko M A;Ovshinsky S R .Advanced Materials for Next Generation High Energy and Power Nickel-Metal Hydride Portable Batteries[J].Applications and Advances,2001,9-12:325-336.
[5] K. Shashikala;Seemita Banerjee;Asheesh Kumar;M.R. Pai;C.G.S. Pillai .Improvement of hydrogen storage properties of TiCrV alloy by Zr substitution for Ti[J].International journal of hydrogen energy,2009(16):6684-6689.
[6] M. Kandavel;V.V. Bhat;A. Rougier;I. Aymard;G.-A. Nazri;J.-M. Tarascon .Improvement of hydrogen storage properties of the AB_2 Laves phase alloys for automotive application[J].International journal of hydrogen energy,2008(14):3754-3761.
[7] Yigang Yan;Yungui Chen;Hao Liang .Hydrogen storage properties of V30-Ti-Cr-Fe alloys[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2007(1/2):110-114.
[8] Yang M;Zhao X;Ding Y.Electrochemical Properties of Titanium-Based Hydrogen Storage Alloy Prepared by Solid Phase Sintering[J].International Journal of Hydrogen Energy,2009
[9] Kadir K;Sakai T;Uehara I .Synthesis and Structure Determination of a New Series of Hydrogen Storage Alloys;RMg2Ni9(R=La,Ce,Pr,Nd,Sm and Gd) Built from MgNi2 Laves-Type Layers Alternating with AB5 layers[J].Journal of Alloys and Compounds,1997,257(1-2):115-121.
[10] Kohno T.;Yoshida H. .Hydrogen storage properties of new ternary system alloys: La_2MgNi_9, La_5Mg_2Ni_(23), La_3MgNi_(14)[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2000(2):L5-L7.
[11] Yixin Liu;Liqin Xu;Weiqing Jiang;Guangxu Li;Wenlou Wei;Jin Guo .Effect of substituting Al for Co on the hydrogen-storage per-formance of La_(0.7)Mg_(0. 3_Ni_(2.6_Al_xCo_(0.5_x_ {x = 0.0-0.3) alloys[J].International journal of hydrogen energy,2009(7):2986-2991.
[12] X.B. Yu;J.Z. Chen;Z. Wu;B.J. Xia;N.X. Xu .Effect of Cr content on hydrogen storage properties for Ti-V-based BCC-phase alloys[J].International journal of hydrogen energy,2004(13):1377-1381.
[13] X.B. Yu;Z.X. Yang;S.L. Feng;Z. Wu;N.X. Xu .Influence of Fe addition on hydrogen storage characteristics of Ti-V-based alloy[J].International journal of hydrogen energy,2006(9):1176-1181.
[14] He Miao;Yongfeng Liu;Yan Lin;Dan Zhu;Lei Jiang;Hongge Pan .A study on the microstructures and electrochemical properties of La_(0.7)Mg_(0.3)Ni_(2.45-x)Cr_xCo_(0.75)Mn_(0.1)Al_(0.2) (x = 0.00-0.20) hydrogen storage electrode alloys[J].International journal of hydrogen energy,2008(1):134-140.
[15] Shen Xiangqian;Chen Yungui;Tao Mingda;Wu Chaoling;Deng Gang;Kang Zhenzhen .The structure and high-temperature (333 K) electrochemical performance of La_(0.8-x)Ce_xMg_(0.2)Ni_(3.5) (x = 0.00-0.20) hydrogen storage alloys[J].International journal of hydrogen energy,2009(8):3221-3233.
[16] Anik M;Akay I;Topcu S .Effect of Electroless Nickel Coating on the Electrochemical Hydrogen Storage Characteristics of Al and Zr Including Mg-Based Alloys[J].International Journal of Hydrogen Energy,2009,34:5449-5457.
[17] Kalinichenka S;Rntzsch L;Kieback B.Structural and Hydrogen Storage Properties of Melt-Spun Mg-Ni-Y Alloys[J].International Journal of Hydrogen Energy,2009
[18] Hochun Lee;Hyeong-Jin Kim;Dongmyung Kim;Seungdon Choi .Expanding performance limit of lithium-ion batteries simply by mixing Al(OH)_3 powder with LiCoO_2[J].Journal of Power Sources,2008(1):359-362.
[19] Gan Y;Zhang L;Wen Y et al.Carbon Combustion Synthesis of Lithium Cobalt Oxide as Cathode Material for Lithium ion Battery[J].Particuology,2008,6:81-84.
[20] Stux A M;Swider-Lyons K E .Improved High Power Li-Ion Batteries with Li2RuO3 Addition:A Fast Charging and Fast Cycling Study[J].Journal of Power Sources,2007,165:635-639.
[21] Yang Z;Wang B;Yang W et al.A Novel Method for the Preparation of Submicron-Sized LiNi0.8Co0.2O2 Cathode Material[J].Electrochimica Acta,2007,52:8069-8074.
[22] Hu G R;Deng X R;Peng Z D et al.Comparison of AlPO4-and Co3(PO4)2-Coated LiNi0.8Co0.2O2 Cathode Materials for Li-ion Battery[J].Electrochimica Acta,2008,53:2567-2573.
[23] Lee K S;Myung S T;Prakash J et al.Optimization of Microwave Synthesis of Li[Ni0.4Co0.2Mn0.4]O2 as a Positive Electrode Material for Lithium Batteries[J].Electrochimica Acta,2008,53:3065-3074.
[24] Li, HJ;Chen, G;Zhang, B;Xu, J .Advanced electrochemical performance of Li[Ni(1/3-x)FexCo1/3Mn1/3]O-2 as cathode materials for lithium-ion battery[J].Solid State Communications,2008(3/4):115-120.
[25] R. Thirunakaran;A. Sivashanmugam;S. Gopukumar;Charles W. Dunnill;Duncan H. Gregory .Studies on chromium/aluminium-doped manganese spinel as cathode materials for lithium-ion batteries - A novel chelated sol-gel synthesis[J].Journal of Materials Processing Technology,2008(1/3):520-531.
[26] Arumugam, D;Kalaignan, GP;Manisankar, P .Development of structural stability and the electrochemical performances of 'La' substituted spinel LiMn2O4 cathode materials for rechargeable lithium-ion batteries[J].Solid state ionics,2008(15/16):580-586.
[27] 金维华,蔡振平,温力蓉.铝/氟比对改性尖晶石锰酸锂性能的影响[J].无机化学学报,2007(09):1599-1602.
[28] Daiwon Choi;Prashant N. Kumta .Surfactant based sol-gel approach to nanostructured LiFePO_4 for high rate Li-ion batteries[J].Journal of Power Sources,2007(2):1064-1069.
[29] Zhou, Y;Yue, HF;Zhang, XY;Deng, XY .Preparation and characterization of LiV3O8 cathode material for lithium secondary batteries through an EDTA-sol-gel method[J].Solid state ionics,2008(27/32):1763-1767.
[30] Yan Feng;Yali Li;Feng Hou .Boron Doped Lithium Trivanadate As A Cathode Material For An Enhanced Rechargeable Lithium Ion Batteries[J].Journal of Power Sources,2009(1):224-228.
[31] Liqun Zhou;Yongguang Liang;Ling Hu .Much improved capacity and cycling performance of LiVMoO_6 cathode for lithium ion batteries[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2008(1/2):389-393.
[32] James Manuel;Jae-Kwang Kim;Jou-Hyeon Ahn;Gouri Cheruvally;Ghanshyam S. Chauhan;Jae-Won Choi;Ki-Won Kim .Surface-modified Maghemite As The Cathode Material For Lithium Batteries[J].Journal of Power Sources,2008(2):527-531.
[33] Chuen-Shii Chou;Ching-Hua Tsou;Chin-I Wang .Preparation of Graphite/Nano-Powder Composite Particles and Applicability as Carbon Anode Material in a Lithium Ion Battery[J].Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan,2008(4):383-396.
[34] Nozaki H;Nagaoka K;Hoshi K et al.Carbon-Coated Graphite for Anode of Lithium Ion Rechargeable Batteries:Carbon Coating Conditions and Precursors[J].Journal of Power Sources,2009,194:486-493.
[35] L. Wang;Y. Yu;P.C. Chen;D.W. Zhang;C.H. Chen .Electrospinning Synthesis Of C/fe_3o_4 Composite Nanofibers And Their Application For High Performance Lithium-ion Batteries[J].Journal of Power Sources,2008(2):717-723.
[36] Wu, XL;Liu, Q;Guo, YG;Song, WG .Superior storage performance of carbon nanosprings as anode materials for lithium-ion batteries[J].Electrochemistry communications,2009(7):1468-1471.
[37] Zhaojun Luo;Dongdong Fan;Xianlong Liu;Huanyu Mao;Caifang Yao;Zhongyi Deng .High performance silicon carbon composite anode materials for lithium ion batteries[J].Journal of Power Sources,2009(1):16-21.
[38] Qin Si;K. Hanai;N. Imanishi;M. Kubo;A. Hirano;Y. Takeda;O. Yamamoto .Highly reversible carbon-nano-silicon composite anodes for lithium rechargeable batteries[J].Journal of Power Sources,2009(1):761-765.
[39] Zhang T;Gao J;Zhang HP;Yang LC;Wu YP;Wu HQ .Preparation and electrochemical properties of core-shell Si/SiO nanocomposite as anode material for lithium ion batteries[J].Electrochemistry communications,2007(5):886-890.
[40] Z.P. Xia;Y. Lin;Z.Q. Li .A new phase in Ni-Sn-P system and its property as an anode material for lithium-ion batteries[J].Materials Characterization,2008(9):1324-1328.
[41] Jusef Hassoun;Gaelle Derrien;Stefania Panero;Bruno Scrosati .A SnSb-C nanocomposite as high performance electrode for lithium ion batteries[J].Electrochimica Acta,2009(19):4441-4444.
[42] Sukeun Yoon;Jae-Myung Lee;Hansu Kim;Dongmin Im;Seok-Gwang Doo;Hun-Joon Sohn .An Sn-Fe/carbon nanocomposite as an alternative anode material for rechargeable lithium batteries[J].Electrochimica Acta,2009(10):2699-2705.
[43] Kei Nishikawa;Kaoru Dokko;Koji Kinoshita;Sang-Wook Woo;Kiyoshi Kanamura .Three-dimensionally ordered macroporous Ni-Sn anode for lithium batteries[J].Journal of Power Sources,2009(1):726-729.
[44] Ke F S;Huang L;Wei H B et al.Fabrication and Properties of Macroporous Tin-Cobalt Alloy film Electrodes for Lithium-Ion Batteries[J].Journal of Power Sources,2007,170:450-455.
[45] LJ. Fu;LC. Yang;Y. Shi .Synthesis of carbon coated nanoporous microcomposite and its rate capability for lithium ion battery[J].Microporous and Mesoporous Materials,2009(1/2):515-518.
[46] H. Huang;W.K. Zhang;X.P Gan .Electrochemical Investigation of TiO_2/carbon nanotubes nanocomposite as anode materials for lithium-ion batteries[J].Materials Letters,2007(1):296-299.
[47] Atef Y. Shenouda;K.R. Murali .Electrochemical properties of doped lithium titanate compounds and their performance in lithium rechargeable batteries[J].Journal of Power Sources,2008(1):332-339.
[48] L.C. Yang;Q.S. Gao;Y. Tang;Y.P. Wu;R. Holze .MoO_2 synthesized by reduction of MoO_3 with ethanol vapor as an anode material with good rate capability for the lithium ion battery[J].Journal of Power Sources,2008(1):357-360.
[49] Yan-Hua Cui;Ming-Zhe Xue;Xiao-Lin Wang;Ke Hu;Zheng-Wen Fu .InP as new anode material for lithium ion batteries[J].Electrochemistry communications,2009(5):1045-1047.
[50] Hongbo Wang;Qinmin Pan;Yuexiang Cheng;Jianwei Zhao;Geping Yin .Evaluation of ZnO nanorod arrays with dandelion-like morphology as negative electrodes for lithium-ion batteries[J].Electrochimica Acta,2009(10):2851-2855.
[51] 王雅东,艾新平,杨汉西.超细非晶态Fe-B和Co-B合金粒子的电化学行为[J].电化学,2004(02):175-180.
[52] Y. D. Wang;X. P. Ai;Y. L. Cao;H. X. Yang .Exceptional electrochemical activities of amorphous Fe–B and Co–B alloy powders used as high capacity anode materials[J].Electrochemistry communications,2004(8):780-784.
[53] Wang, YD;Ai, XP;Yang, HX .Electrochemical hydrogen storage behaviors of ultrafine amorphous Co-B alloy particles[J].Chemistry of Materials,2004(24):5194-5197.
[54] 吴宇平;万春荣;姜长印.锂离子二次电池[M].北京:化学工业出版社,2002
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%