锂钒氧化物作为锂离子电池正极材料的电化学
摘要
简述了锂钒氧化物作为锂离子正极材料的研究现状,在此基础上总结了正极改性和探索新型正极材料的原则。具有层状或隧道式微观结构是选择锂离子电池候选正极材料的必要前提条件。
参考文献15
-
1M. N. Obrovac, et al. Explanation for the 4.8V plateau in LiCr xMn2-xO4[J ] . Physical Review 1998 , B57 : 5728-5733.
-
2N. Van Landschoot, E. M. Kelder, J. Schoonman. Crtric acid-assisted synthesis and characterization of doped LiCoVO4[J]. Solide State Ionics, 2004,166:307-316.
-
3F. Bonino , et al. Synthesis and characterization of LiMxMm4-xO8 (M = Co, Fe) as positive active materials for lithium ion cells[J]. Journal of Power Sources ,2001,97 - 98 : 389 - 392.
-
4F. Orsini , et al. 'Chimie douce'synthesis and elecu'o- chemical properties of amorphous and crystallized LiNi2V04 vs. Li [J]. Solid State Ionics, 1998,107 : 123 -133.
-
5G. T. K. Fey , et al. The effects of the stoichiometry andsynthesis temperature on the preparation of the inversespinel LiNiVO4 and its performance as a new high vohage cathode materi- al [J ]. Journal of Power Sources, 1997,68 : 549 - 552.
-
6C. Gonzalez , et al. Structure and magnetic properties of LiMV04 (M = Co ,Ni, Cu ) spinel [J ]. Journal of Materials Science, 1994,29 : 3 458 - 3 460.
-
7Hiroo Kawai, et al. High-voltage lithium cathode materials [J ]. Journal of Power Sources, 1999,81 - 82 : 67 - 72.
-
8S. R. S. Prabaharan , et al. Novel low-temperature syn- thesis and characterization of LiNiV04 for high-voltage Li ion bat- teries[J ]. Journal of material chemistry, 1997,7(9) : 1 791-796.
-
9S. Panero, et al. Synthesis and characterization of LiCoyNi (1 - y)V04 lithium insertion materials[J ]. Solid State Ionics, 2000, 128 : 43 - 52.
-
10A. Subramania,N. Angayarkanni, S.N.Karthick, T. Va- sudevan. Combustion synthesis of inverse spinel LiNiV04 nano-particles[J]. Materials Letters. 2006.
二级参考文献14
-
1王志兴,张宝,李新海,万智勇,郭华军,彭文杰.富锂尖晶石Li_(1+x)Mn_(2-x)O_4的合成与性能[J].中国有色金属学报,2004,14(9):1525-1529. 被引量:23
-
2Barboux P, Tarascon J M, Shokoohi F K. The use of acetates as precursors for the low - temperaRLre synthesis of LiMn2O4 and LiCoO2 intercalation compounds[J]. J Solid State Chem,1991, (94) : 185.
-
3Kawakita J, Miura T, Kishi T. Charging characteristics of Li1+xV3O8 [J]. Solid state Ionics, 1999, (7) :689 - 694.
-
4Dai Jin - xiang, Sam F Y, Gao Zhi - qiang, et al. Low -temperature systhesized LiV3O3 as a cathode materials for rechargeable lithium batteries[J] , J Electrochem Soc, 1998,145(9):3057- 3062.
-
5Fey G T K, Li W, Dahn J R. LiNiVO4 : a 4.8V - volt electrochemical for lithium cells[J] . J Electrochem Soc, 1994,141(9) :2279- 2282.
-
6Lu Chung - shin, Liou Shaw - jiang. Hydrothermal synthesis of LiNiVO4 cathode materials for lithium ion batteries [ J], J Mater Sci Lett, 1998, 17(9) :733 - 735.
-
7Garcia B, Millet M, Pereira - ramos J P, et al. Electro-chemical behavior of chemically lithiated LixV2O5 phase(0.9≤x≤1.6) [J] . J Power Sources, 1999, (81 - 82) :67O- 674.
-
8Huang D. Solid solution: new cathodes for next generation lithium - ion batteries[J] . Advanced Battery Technology,1998(11) :23 - 27.
-
9Delmas C. On the behavior of the LiNixO2 system: an electrochemical and structural overview[J] . J. Power Sources,1997, (68) : 120- 124.
-
10Li W, Currie C. Morphology effect on the electrochemical performance of LiN1-yCoyO2 [ J ] . J Electrochem Soc, 1997,(144) : 2773 - 2779.
共引文献30
-
1王爱荣,吴广明,杨辉宇,张明霞,周斌,牛锡贤,汪国庆,沈军.V_2O_5复合薄膜材料的制备[J].真空科学与技术学报,2008,28(S1):68-73. 被引量:1
-
2徐茶清,田彦文,翟玉春,王自霞.尖晶石型LiMn_2O_4的溶胶凝胶法制备[J].东北大学学报(自然科学版),2004,25(10):998-1001. 被引量:7
-
3王双才,李元坤,刘述平.锂离子电池正极材料研究动态[J].中国锰业,2004,22(3):31-34. 被引量:15
-
4刘春侠,谢刚.相转移法制备纳米级LiNiO_2电池材料的研究[J].有色矿冶,2004,20(5):41-43.
-
5李普良,徐舜,习小明.锂离子电池正极材料LiCoO_2合成方法及其掺杂研究进展[J].矿冶工程,2004,24(1):84-88. 被引量:10
-
6易惠华,戴永年,代建清,姚耀春,胡成林.锂离子电池正极材料的现状与发展[J].云南化工,2005,32(1):39-42. 被引量:11
-
7曹文玉,顾惠敏,翟玉春,田彦文.锂离子电池正极材料LiNiO_2的制备及修饰[J].材料与冶金学报,2005,4(1):30-35. 被引量:6
-
8唐致远,卢星河,张娜.尖晶石型LiMn_2O_4电池材料的元素掺杂[J].化学通报,2005,68(5):321-328. 被引量:7
-
9郑雪萍,刘胜林,曲选辉.锂离子电池正极材料的研究现状[J].稀有金属与硬质合金,2005,33(3):42-45. 被引量:9
-
10卢俊彪,唐子龙,张中太,沈万慈.锂离子二次电池正极材料晶体结构与电化学性能[J].稀有金属材料与工程,2005,34(11):1681-1685. 被引量:8
-
1徐艳辉.锂离子电池正极材料电化学[J].稀有金属材料与工程,2003,32(11):875-879. 被引量:17
-
2郭德顺.隧道式电动机[J].家用电器科技,1989(6):9-10.
-
3张俊潇.含分布式电源的20kV新型配电网的规划[J].电气应用,2010(17):21-22.
-
4田甜,王为辉,卫山.电站弯头的隧道式成型与推制成型工艺的分析研究[J].机械,2014,41(11):61-63.
-
5苏庆昌.SDS/N型隧道式(炉内循环)加热炉的应用[J].中小型电机,1992,19(3):63-63.
-
6王定之.SDS/隧道式(炉内循环)电机转子加热炉介绍[J].中小型电机,1991,18(2):64-64.
-
7祝炳和,顾文荣,朱家钦,俞天生.PTC陶瓷生产中影响稳定及重复性的因素[J].电子元件与材料,1995,14(3):9-15. 被引量:8
-
8江枫.蔡克迪:在二甲醚中探索新型化学电源[J].中国发明与专利,2012(11):105-105.
-
9方宪国,张学建.混合式微波泄漏抑制器设计[J].福州大学学报(自然科学版),1994,22(1):37-40.
-
10白益民.单片机在隧道式烘漆炉中控制电机绕组温度的应用[J].现代电子技术,1996,19(2):42-44.