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采用溶胶-凝胶法,合成纳米复合材料硅酸亚铁锂(Li2FeSiO4/C).用XRD、TEM和电化学方法,研究了Co2+掺杂对Li2FeSiO4/C的影响.结果表明,掺杂适量的Co2+不会改变Li2FeSiO4的正交晶系结构,可稳定材料结构,改善高倍率充放电性能.室温下,Li2Fe0.97Co0.03SiO4/C以0.1C放电的首次放电比容量为151.8 (mA· h)/g,20次充放电循环后放电比容量为131.2 (mA·h)/g;Li2FeSiO4/C的首次放电比容量为122.0 (mA·h)/g,20次循环后,比容量衰减率为20.3%.交流阻抗测试表明:Li2Fe0.97Co0.03SiO4/C在1.5~4.5V下充放电的可逆性优于Li2FeSiO4/C.

参考文献

[1] Fangyi Cheng;Jing Liang;Zhanliang Tao;Jun Chen .Functional Materials for Rechargeable Batteries[J].Advanced Materials,2011(15):1695-1715.
[2] 向楷雄,郭华军,李新海,王志兴,罗文斌,李黎明.合成温度对Li2FeSiO4/C电化学性能的影响[J].功能材料,2008(09):1455-1457.
[3] Yabuuchi, N.;Yamakawa, Y.;Yoshii, K.;Komaba, S. .Low-temperature phase of Li_2FeSiO_4: Crystal structure and a preliminary study of electrochemical behavior[J].Dalton transactions: An international journal of inorganic chemistry,2011(9):1846-1848.
[4] 胡国荣,曹雁冰,彭忠东,杜柯,蒋庆来.微波合成法制备锂离子电池正极材料Li2FeSiO4[J].物理化学学报,2009(05):1004-1008.
[5] Dominko R;Bele M;Gaberscek M;Meden A;Remskar M;Jamnik J .Structure and electrochemical performance of Li2MnSiO4 and Li2FeSiO4 as potential Li-battery cathode materials[J].Electrochemistry communications,2006(2):217-222.
[6] R. Dominko;I. Arcon;A. Kodre;D. Hanzel;M. Gaberscek .In-situ XAS study on Li_2MnSiO_4 and Li_2FeSiO_4 cathode materials[J].Journal of Power Sources,2009(1):51-58.
[7] Joze Moskon;Robert Dominko;Romana Cerc-Korosec;Miran Gaberscek;Janez Jamnik .Morphology and electrical properties of conductive carbon coatings for cathode materials[J].Journal of Power Sources,2007(2):683-688.
[8] Li-ming Li;Hua-jun Guo;Xin-hai Li;Zhi-xing Wang;Wen-jie Peng;Kai-xiong Xiang;Xuan Cao .Effects of roasting temperature and modification on properties of Li_2FeSiO_4/C cathode[J].Journal of Power Sources,2009(1):45-50.
[9] Nishimura SI;Hayase S;Kanno R;Yashima M;Nakayama N;Yamada A .Structure of Li2FeSiO4[J].Journal of the American Chemical Society,2008(40):13212-13213.
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