[1] Wadsley A D. Crystal chemistry of non-stoichiometric pentavalent vanadium oxides: crystal structure of Li1+xV3O8 [J]. Acta Crysta, 1957, 10: 261-267.
[2] 史鹏飞.化学电源工艺学 [M].哈尔滨:哈尔滨工业大学出版社,2006:200-201.
[3] Pistoia G, Pasquali M, Tocci M, et al. Lithium/lithium vanadium oxide secondary batteries: IV Evaluation of factors affecting the performance of test cells [J].J Power Sources, 1985, 15(1):13-25
[4] Liu J R, Wang M, Yin D C, et al. Low-temperature synthesis of LiV3O8 as cathode material for rechargeable Lithium-ion batteries [J]. Journal of Inorganic Materials, 2002, 17(3): 617-620(in Chinese). 刘建睿,王猛,尹大川,等. 锂离子电池正极材料LiV3O8的低温合成研究 [J].无机材料学报,2002,17(3):617-620.
[5] Pistoia G,Pasquali M,Wang G,et a1.Li/Li1+xV3O8 secondary batteries [J].J Electrochem Soc,1990,137(8):2365-2370.
[6] Zhang H X, Tong Q S, Lin S Y, et al. The electrochemical characteristics of Li1+xV3O8 synthesized by a microwave sintering method [J]. Chinese Journal of Power Sources, 2005, 29(2): 71-74 (in Chinese). 张华香,童庆松,林素英,等. 微波烧结法制备Li1+xV3O8的电化学性能 [J] . 电源技术, 2005,29(2):71-74.
[7] Kumagai N, Yu A. Ultrasonically treated LiV3O8 as a cathode material for secondary lithium batteries [J]. J Electrochem Soc, 1997, 144(3):830- 835.
[8] Tran N, Bramnik K G, Hibst H, et al. Spray-drying synthesis and electrochemical performance of lithium vanadates as positive electrode materials for lithium batteries [J]. J Electrochem Soc,2008, 155(5):A384-A389.
[9] Dai J X, Sam F Y Li, Gao Z Q, et al. Low-temperature synthesized LiV3O8 as a cathode material for rechargeable lithium batteries [J]. J Electrochem Soc,1998, 145:3057-3062.
[10] Manev V, Momchilov A, Nassalevska A, et al. A new approach to the improvement of Li1+xV3O8 performance in rechargeable lithium batteries [J]. J Power Sources, 1995, 54: 501-507.
[11] Kawakita J, Makino K, Katyama Y, et al. Preparation and lithium insertion behavior of LiyNa1. 2 - yV3O8 [J]. J Solid State Ionics, 1997, 99(3-4):165-171.
[12] Kumagai N, Yu A, West K. Li1 -xNaxV3O8 as positive materials for secondary lithium batteries [J]. J Applied Electrochemistry, 1997, 27 (8):953-958.
[13] Kawakita J, Katagiri H, Miura T, et al. Lithium insertion behavior of manganese or molybdenum substituted Li1+ xV3O8 [J]. J Power Sources, 1997, 68: 680-685.
[14] Serge V Pouchko, Alexey K Ivanov-Schitz, Frans G B Ooms, et al. Lithium insertion into γ-type vanadium oxide bronzes doped with molybdenum VI and tungsten VI ions [J]. Solid State Ionics, 2001, 144: 151-161.
[15] Jiao L F, Liu L, Sun J L, et al. Effect of AlPO4 nanowire coating on the electrochemical properties of LiV3O8 cathode material [J]. J Phys Chem C, 2008, 112:18249-18254.
[16] West K, Zachau-Christiansen B, Skaarup S, et al. Comparison of LiV3O8 cathode materials prepared by different methods [J]. J Electrochem Soc,1996, 143(3):820-825.
[17] Dean J A, Lange N A. Langes handbook of chemistry [M]. 15th ed. New York: Mc Graw-Hill, c1999.
|