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Olivine-structured pure LiFePO4 and doped Li(M, Fe)PO4 (M=La, Ce, Nd, Mn, Co, Ni) have been synthesized by a solvothermal method.X-ray diffraction and field emission scanning electron microscopy analyses indicate that the as-prepared LiFePO4 is well-crystallized nanopowders without any detectable impurity phases.The electronic conductivity of LiFePO4 is enhanced by around 1-3 orders by doping.It was found that doping alone is not sufficient for the high-rate performance of LiFePO4 and surface coating with such as carbon should be needed.The best dopant for LiFePO4 is Nd among those studied in the present work.Accordingly, doping with 1 mol fraction Nd leads to an increase in 70 mAh/g at 0.1 C for the hydrothermally synthesized sample and 50 mAh/g at 1.0 C after carbon-coating in comparison with the undoped samples.

参考文献

[1] A K Padhi;K S Nanjundaswamy;J B Goodenough .[J].Journal of the Electrochemical Society,1997,144:1188.
[2] X M Wang;Y Sone;S Kuwajima .[J].Journal of Power Sources,2005,142:313.
[3] A Yamada;M Hosoya;S C Chung;Y Kudo K Hinokuma K Y Liu and Y Nishi .[J].Journal of Power Sources,2003,119-121:232.
[4] M Manickam;P Singh;S Thurgate;K Prince .[J].Journal of Power Sources,2006,158:646.
[5] S Q Shi;C Y Quyang;Z H Xiong;L J Liu Z X Wang H Li D S Wang L Q Chen and X J Huang .[J].Phys Rev B-Solid St,2005,71:144404.
[6] M. Koltypin;D. Aurbach;L. Nazar;B. Ellis .More on the performance of LiFePO_4 electrodes-The effect of synthesis route, solution composition, aging, and temperature[J].Journal of Power Sources,2007(2):1241-1250.
[7] K.S. Park;J.T. Son;H.T. Chung;S.J. Kim;C.H. Lee;K.T. Kang;H.G. Kim .Surface modification by silver coating for improving electrochemical properties of LiFePO_4[J].Solid State Communications,2004(5):311-314.
[8] N Jayaprakash;N Kalaiselvi .[J].Electrochemistry Communications,2007,9:620.
[9] B Q Zhu;X H Li;Z X Wang;H J Guo .[J].Materials Chemistry and Physics,2006,98:373.
[10] J.F. Ni;H.H. Zhou;J.T. Chen .LiFePO_4 doped with ions prepared by co-precipitation method[J].Materials Letters,2005(18):2361-2365.
[11] A A Salah;A Manger;C M Julien;F Gendron .[J].Materials Science and Engineering,2006,129:232.
[12] D H Kim;J K Kim .[J].Journal of Physics and Chemistry of Solids,2007,68:734.
[13] F Croce;A D Epifanio;J Hassoun;A Deptula T Olczac .[J].Electrochemical and Solid-State Letters,2002,5:A47.
[14] C H Mi;X B Zhao;G S Cao;J P Tu .[J].Journal of the Electrochemical Society,2005,152:A483.
[15] L Wang;Y D Huang;R R Jiang;D Z Jia .[J].Electrochimica Acta,2007,52:6778.
[16] M R Yang;W H Ke;S H Wn .[J].Journal of Power Sources,2005,146:539.
[17] M R Gaberscek;R Dominko;M Bele;M Remskar D Hanzel and J Jamnik .[J].Solid State Ionics,2005,176:1801.
[18] J K Kim;J W Choi;G Cheruvally;J U Kim J H Ahn G B Cho K W Kim and H J Ahn .[J].Materials Letters,2007,61:3822.
[19] V Palomares;A Goni;I G D Muro;I D Meatza M Bengoechea O Miguel and T Rojo .[J].Journal of Power Sources,2007,171:879.
[20] G. Meligrana;C. Gerbaldi;A. Tuel .Hydrothermal synthesis of high surface LiFePO_4 powders as cathode for Li-ion cells[J].Journal of Power Sources,2006(1):516-522.
[21] X J Chen;X B Zhao;G S Cao;S L Ma J Xie and T J Zhu .[J].Transactions of Nonferrous Metals Society of China,2006,16:1665.
[22] D G Zhuang;X B Zhao;J Xie;J Tu T J Zhu and G S Cao .[J].Acta Physico-Chimica Sinica,2006,22:840.
[23] S Y Chung;J T Blokong;Y M Chiang .[J].Nature Materials,2002,1:123.
[24] C Delacourt;C Wurm;L Laffont;J B Leriche and C Masquelier .[J].Solid State Ionics,2006,177:333.
[25] A A Salah;P Jozwiak;K Zaghib;J Garbarczyk F Gendron A Mauger and C M Julien .[J].Spectrochimica Acta Part A:Molecular and Biomolecular Spectroscopy,2006,65:1007.
[26] N Jayaprakash;N Kalaiselvi .[J].Electrochemistry Communications,2007,9:620.
[27] J Hong;C S Wang;U Kasavajjula .[J].Journal of Power Sources,2006,162:1289.
[28] J Jiang;C Y Ouyang;H Li;Z X Wang X J Huang and L Q Chen .[J].Solid State Communications,2007,143:144.
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