[1] TARASCON J M,ARMAND M.Issues and Challenges Facing Rechargeable Lithium Batteries [J].Nature,2001,414:359-367.[2] RONCI F,STALLWORTH P E,ALAMGIR F,et al.Lithium-7 Nuclear Magnetic Resonance and Ti K-Edge X-Ray Absorption Spectroscopic Investigation of Electrochemical Lithium Insertion in Li4/3+xTi5/3O4 [J].J. Power Sources,2003(119/121):631-636.[3] ZAGHIB K,SIMONEAU M,ARMAND M,et al.Electrochemical Study of Li4Ti5O12 as Negative Electrode for Li-Ion Polymer Rechargeable Batteries [J].J. Power Sources,1999(81/82):300-305.[4] ARIYOSHI K,YAMATO R,OHZUKU T.Zero-Strain Insertion Mechanism of Li[Li1/3Ti5/3]O4 for Advanced Lithium-Ion (Shuttlecock) Batteries [J].Electrochim.Acta,2005,51(6):1125-112.[5] ANDRIIKO A A,RUDENOK P V,NYRKOVA L I.Diffusion Coefficient of Li+ in Solid-State Rechargeable Battery Materials [J].J. Power Sources,1998,72(2):146-149.[6] 何则强,熊利芝,吴显明,等新型锂离子电池正极材料LiVOPO4 的制备与表征 [J].无机化学学报,2008,24(2):303-306.[7] XIONG Li-zhi,HE Ze-qiang.A New Rheological Phase Route to Synthesize Nano-LiVOPO4 Cathode Material for Lithium Ion Batteries [J].Acta Phys. Chim. Sin.,2010,26(3):573-577.[8] 姚经文,吴锋,官亦标.尖晶石Li4Ti5O12中锂离子的化学扩散系数的研究 [J].无机化学学报,2007,23 (8):1 439-1 442.[9] REN M M,ZHOU Z,SU L W,et al.LiVOPO4:A Cathode Material for 4 V Llithium Ion Batteries [J].Journal of Power Sources,2009,189(1):786-789. |