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利用电解二氧化锰(EMD)和碳酸锂为原料,采用熔融浸渍法合成了尖晶石型锂锰氧化物LiMn2O4,并用热重分析(TGA)、粉末X射线衍射技术研究了合成条件对产物的晶体结构、电化学性能的影响.研究结果表明,在合成的后续阶段反应时间的长短对产物的晶体结构和电化学性能的影响很大,时间长,会使LiMn2O4分解为Li2MnO3和Mn2O3;LiMn2O4的初始放电比容量也随反应时间的延长而下降.在最佳条件下合成的LiMn2O4的首次放电比容量高达132.4mAh/g,50次循环后的放电比容量还保持在125.6 mAh/g的水平.

参考文献

[1] Siapkas D I;Mitsas C L;Samatas I et al.Synthesis and Characterization of LiMn2O4 for Use in Li - ion Batteries[J].Journal of Power Sources,1998,72:22-26.
[2] Atuo Yamada;Kaoru Miura;Koicchiro Hinokuma et al.Synthesis and Structural Apects of LiMn2O4- δ as a Cathode for Cathode for Rechargeable Lithium Batteries[J].Journal of the Electrochemical Society,1995,142(07):2149-2156.
[3] KaoRu Miura;Atsuo Yamada;Masahlor Tanaka .ElectricStates of Spinel LiMn2O4 as a Cathode of the Rechargeable Battery[J].Electrochimica Acta,1996,41(02):49.
[4] Yongyao Xia;Hidefumi Takeshige;Hideyuki Noguchi;Masaki Yoshio .Studies on an Li-Mn-O spinel system (obtained by melt-impregnation) as a cathode for 4 V lithium batteries Part 1. Synthesis and electrochemical behaviour of Li_xMn_2O_4[J].Journal of Power Sources,1995(1):61-67.
[5] Yongyao Xia;Masaki Yoshio .Studies on the Li-Mn-O spinel system (obtained from melt-impregnation method) as positive electrodes for 4 V lithium batteries. Part Ⅲ. Characterization of capacity and rechargeability[J].Journal of Power Sources,1996(1):97-102.
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