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Preparation and characterization of spinel LiMn2O4 nanorods as lithium-ion battery cathodes CHEN Ze-hua(陈泽华) , HUANG Ke-long(黄可龙), LIU Su-qin(刘素琴), WANG Hai-yan(王海燕) School of Chemistry... very similar to that reported in Ref.[12]. The most acceptable explanation is that particle size seems to be a criterion affecting the electrochemical performance of lithium ion battery cathodes in Li......
, Saleh Y, Loutfy R. Comparative studies of MCMB and C-C composite as anodes for lithium-ion battery systems [J]. J Power Sources, 2003, 114: 264-276.  .... 锂离子电池正极材料锰钴酸锂表征与分解动力学[J]. 中国有色金属学报,2005, 15(9): 1396-1402.ZHAO Ming-shu, WANG Fei, SONG Xiao-ping. Synthesizing kinetics and characteristics of LiMnCoO4 using as lithium-ion battery cathode material[J......
. The results show that the bonding behavior between Fe and F atoms is a combination of ionic and covalent bond. Key words: magnetic moment; electronic structure; bonding mechanism; FeF2; lithium-ion battery... materials for lithium-ion batteries are the layered intercalation compounds, such as LiCoO2, LiMnO2, LiFePO4. Recently, metal fluorides are considered next generation lithium ion battery cathode......
University, Fuxin 123000, China) Abstract: The Sn-Co-Cu/C composites as novel anode material for lithium-ion battery were synthesized using Cu powder and CuCO3·Cu(OH)2 as Cu resource by solid-state.... Electrodeposition and electrochemical properties of ternary Sn-Co-Zn alloy electrodes as anodes for lithium-ion batteries[J]. Acta Physico-Chimica Sinica, 2010, 26(3): 561-566. [9] 沈 丁, 杨绍斌, 杨 芳, 张淑凯. 固相烧结法制备Sn-Co合金......
Trans. Nonferrous Met. Soc. China 24(2014) 2314-2319 Effect of surface treatment for aluminum foils on discharge properties of lithium-ion battery Shigeki NAKANISHI1, Takashi SUZUKI1, Qi CUI1, Jun...: lithium-ion battery; battery performance; surface treatment; conductivity; plain foil; roughened foil 1 Introduction Li-ion secondary batteries are now considered the most promising power sources......
] GIORDANO G, KLASS V, BEHM M, LINDBERGH G, SJOBERG J. Model-based lithium-ion battery resistance estimation from electric vehicle operating data [J]. IEEE Transactions on Vehicular Technology, 2018, 67(5... model for lithium-ion battery under low-temperature conditions [C]// 2017 Prognostics and System Health Management Conference. 2017: 1-5. DOI: 10.1109/PHM.2017.8079131. [6] YANG Ju-feng, XIA Bing, SHANG......
heterostructures as lithium-ion battery anodes [J]. Journal of Materials Chemistry, 2012, 22: 21923-21927. [14] LI Y F, HU Y J, JIANG H, HOU X Y, LI C Z. Phase-segregation induced growth of core–shell... MaterialsChemistry, 2009, 19: 3253-3257. [5] HAN F, LI D, LI W C, LEI C, SUN Q, LU A H. Nanoengineered polypyrrole-coated Fe2O3@C multifunctional composites with an improved cycle stability as lithium-ion anodes [J......
Si-C composite anodes for lithium-ion batteries [J]. Electrochem Commun, 2004, 6: 689-692. [13] SHI D Q, TU J P, YUAN Y F, WU H M, LI Y, ZHAO X B. Preparation and electrochemical properties of mesoporous Si/ZrO2 nanocomposite film as anode material for lithium ion battery [J]. Electrochem Commun, 2006, 8: 1610-1614. [14] WRIGHT J D, SOMMERDIJK N A J M. Sol-gel materials chemistry and applications......
Preparation of layered Li(Ni1/3Co1/3Mn1/3)O2 as positive material for lithium-ion secondary battery HU Chuan-yue(胡传跃), WU Hong-tu(吴宏图), GUO Jun(郭 军), WANG Xing-yan(汪形艳), YI Tao(易 涛) Department... for lithium ion battery [J]. J Fluorine Chemistry, 2007, 128(1): 139-143. [16] YABUUCHI N, OHZUKU T. Electrochemical behaviors of Li[Ni1/3Co1/3Mn1/3]O2 in lithium batteries at elevated temperature [J]. J......
, CHEN Zhong-wei. Implementing an in-situ carbon network in Si/reduced graphene oxide for high performance lithium-ion battery anodes[J]. Nano Energy, 2016, 19: 187-197. [62] 高鹏飞. 锂离子电池硅基复合负极材料的制备及电化学... as anode material for lithium ion battery[J]. Nano Energy, 2014, 8(6): 126-132. [25] CHEN Shuang-qiang, BAO Pei-te, WANG Guo-xiu. Synthesis of Fe2O3-CNT-graphene hybrid materials with an open three......