摘要
由于化石能源的不断枯竭和环境污染的日益严重,发展可替代能源和节能减排已是大势所趋。太阳能、风能等新能源以及电动汽车、混合动力汽车已经在全球范围内掀起高潮。锂离子电池作为电动汽车的核心电源和太阳能、风能的储能电源,其研究开发对于新能源的发展具有重大意义,对其关键材料和技术的研发尤为重要,特别是新一代高功率、高容量锂离子动力与储能电池及其核心材料的研发,更是迫在眉睫。
出处
《新材料产业》
2010年第10期6-10,共5页
Advanced Materials Industry
参考文献7
-
1Padhi A K,Nanjundaswamy K S,Goodenough J B.Phospho--olivines as positive--electrode materials for rechargeable lithium batteries[J]. J. Electrochem. Soc., 1997,144(4) : 1188-1194.
-
2Yuan L X,Wang Z H,Zhang W X,et al.Development and challenge of LiFePO4 cathode materials for Li-ion batteries[J]. Energ. Environ. Sci., 2 010, DOI: 10.1039/C0EE00029A.
-
3Huang Y H,Goodenough J B.High-rate LiFePO4 lithium rechargeable battery promoted by electrochemically active polymers[J]. Chem. Mater., 2008,20(23) : 7237-7241.
-
4Goodenough J B,et al.Cathode materials for secondary (rechargeable) lithium batteries:US,US5910382[P].
-
5Armand M,et al.控制尺寸的涂敷碳的氧化还原材料的合成方法:中国,ZL01816319.X[P].
-
6Chiang Y M,et al.Nanoscale ion storage material:US,US2007031732[P].
-
7Barker J, et al. Lithium containing materials: US, US6 716 3 7 2[P].
同被引文献30
-
1唐致远,阮艳莉.不同碳源对LiFePO_4/C复合正极材料性能的影响[J].化学学报,2005,63(16):1500-1504. 被引量:33
-
2雷敏,应皆荣,姜长印,万春荣.高密度球形LiFePO_4的合成及性能[J].电源技术,2006,30(1):11-13. 被引量:45
-
3赖春艳,赵家昌,解晶莹.用两种碳源制备高性能LiFePO_4/C正极材料[J].功能材料与器件学报,2006,12(6):484-488. 被引量:14
-
4罗绍华,唐子龙,卢俊彪,张中太.稀土镧掺杂LiFePO_4正极材料的物理与电化学性能研究(英文)[J].稀有金属材料与工程,2007,36(8):1366-1368. 被引量:20
-
5HOU XianHua1, HU SheJun1,2, LI WeiShan3, ZHAO LingZhi3, RU Qiang1, YU HongWen1 & HUANG ZhaoWen1 1 School of Physics & Telecommunication Engineering, South China Normal University, Guangzhou 510006, China; 2 Department of Mathematics & Physics, Wuyi University, Jiangmen 529020, China; 3 School of Chemistry & Environment, South China Normal University, Guangzhou 510006, China.Ab initio study of the effects of Ag/Mn doping on the electronic structure of LiFePO<sub>4</sub>[J]. Chinese Science Bulletin. 2008(11)
-
6WANG L N,ZHANA X C,ZHANG Z G,et al.A soft chemistry synthesis routine for LiFePO4-C using a novel carbon source. Journal of Alloys and Compounds . 2008
-
7SHANMUKARAJ D,WANG G X,MURUGAN R,et al.Electrochemical studies on LiFe1-xCoxPO4/carbon composite cathode materials synthesized by citrate gel technique for lithium-ion batteries. Materials Science and Engineering:B . 2008
-
8SUN C S,ZHOU Z,XU Z G,et al.Improved high-rate charge/discharge performances of LiFePO4/C via V-doping. Journal of Power Sources . 2009
-
9WANG Y R,YANG Y F,HU X,et al.Electrochemi-cal performance of Ru-doped LiFePO4/C cathode mate-rial for lithium-ion batteries. Journal of Alloys and Compounds . 2009
-
10DELACOURT C,POIZOT P,LEVASSEUR S,et al.Size effects on carbon-free LiFePO4powders. Elec-trochem Solid-state Lett . 2006
二级引证文献3
-
1黄承焕,唐红梨,王长伟,周友元,周新东.LiFePO_(4)正极材料的改性研究及开发进展[J].电池工业,2020(5):247-254. 被引量:2
-
2朱飞,倪华良.锂离子电池正极材料的研究进展[J].通信电源技术,2012,29(5):70-72. 被引量:4
-
3刁志中,刘恋,王永武,高飞,张娜.预处理流程对磷酸铁锂动力电池性能的影响[J].电源技术,2018,42(5):618-619. 被引量:3
-
1利用海水起伏产生波浪的发电装置在英国诞生[J].自动化信息,2008(8):82-82.
-
2唯实.奇特的可再生发电[J].发明与创新(大科技),2009(6):39-40.
-
3周桂萍,史传红.新能源技术—燃料电池[J].山东电力高等专科学校学报,2012,15(5):43-46.
-
4闻声.新能源重大突破:海波发电[J].技术与市场,2009,16(5):93-93.
-
5意大利开发出高空风筝风力发电机[J].电器工业,2012(1).
-
6杨英惠(摘译).质子交换膜燃料电池在商用固定能源应用中的现状及面临的挑战[J].现代材料动态,2007(5):1-3.
-
7胡亚楠.ASTM替代能源技术委员会起草光伏发电系统新标准[J].中国标准化,2012(2):83-83.
-
8英国科学家欲用水下波浪发电[J].现代职业安全,2008(8):91-91.
-
9阴翳礼赞——伦敦设计周上的照明展[J].照明设计,2009(6):70-73.
-
10章晓燕(摘译).铂基燃料电池前景广阔,但造价颇高[J].现代材料动态,2006(7):17-18.