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采用溶胶-凝胶(sol-gel)法制备了颗粒较小(100~300nm)、分布均匀的尖晶石LiCoxMn2-xO4粉体,研究了不同掺杂水平对其结构及电化学性能的影响.结果表明,掺杂少量Co于LiMn2O4中并不改变材料的尖晶石结构;随着Co掺杂量增加,材料结构稳定性提高,极化降低,首次放电比容量逐渐减小,但充放电循环性能却明显改善;在低温(500℃)条件下退火6h后,LiCoxMn2-xO4粉体的放电比容量稍有增加,但对循环性能影响不大;在电流密度0.1mA/cm2和截止电压3.5~4.4V时,LiCo0.1Mn1.9O4粉体首次放电比容量达123mAh/g,20次循环后的稳定放电比容量为106mAh/g,具有较好的电化学性能.

参考文献

[1] K. Du;H. Zhang .Preparation and performance of spinel LiMn_2O_4 by a citrate route with combustion[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2003(1/2):250-254.
[2] Huang Y;Li J;Jia D .Preparation and characterization of LiMn-yCoyO4 spinels by solid state method[J].Journal of Colloid and Interface Science,2005,286:263-267.
[3] 程杰峰;李嵩;季世军.溶胶凝胶法合成掺Co锂锰氧化物LiCo0.1Mn1.9O4[J].金属功能材料,2002(09):36-38.
[4] Manual S A;Renganathan N G;Gopukumar S et al.Cycling behavior of LiNixCoyMn2-x-yO4 prepared by sol-gel route[J].Solid-State Ionicis,2004,175:291-295.
[5] Hon Y M;Fung K Z;Lin S P et al.Effects of metal ion sources on synthesis and electrochemical performance of spinel LiMn2O4[J].Journal of Solid State Chemistry,2002,163:231-238.
[6] Hwang B J;Santhanam R;Liu D G .Characterization of nanoparticles of LiMn2O4 synthesized by citric acid sol-gel method[J].Journal of Power Sources,2001,97-98:443-446.
[7] Yang SH.;Middaugh RL. .Redox reactions of cobalt, aluminum and titanium substituted lithium manganese spinel compounds in lithium cells[J].Solid state ionics,2001(1/2):13-25.
[8] 唐致远,阮艳莉.锂离子电池容量衰减机理的研究进展[J].化学进展,2005(01):1-7.
[9] 周震涛,李新生.溶胶凝胶法合成LiMn2-xCoxO4及其性能研究[J].电源技术,2000(06):341-343.
[10] Bang H J;Donepudi V S;Prakash J .Preparation of partially substituted LiMyMn2-yO4 spinel cathodes for Li-ion batteries[J].Electrochimica Acta,2002,48:443-451.
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