1 Padhi, A.K., Nanjundaswamy, K.S., Goodenough, J.B., "Phospho- olivines as positive-electrode materials for rechargeable lithium bat-teries", J. Electrochem. Soc., 144 (4), 1188-1194 (1997).
2 Aimable, A., Aymes, D., Bernard, F., Le Cras, F., "Characteristics of LiFePO4 obtained through a one step continuous hydrothermal syn-thesis process working in supercritical water", Solid State Ionics, 180 (11-13), 861-866 (2009).
3 Oh, S.W., Myung, S.T., Bang, H.J., Yoon, C.S., Amine, K., Sun, Y.K., "Nanoporous structured LiFePO4 with spherical microscale particles having high volumetric capacity for lithium batteries", Electrochem. Solid St., 12 (9), A181-A185 (2009).
4 Chung, S.Y., Bloking, J.T., Chiang, Y.M., "Electronically conductive phospho-olivines as lithium storage electrodes", Nat. Mater., 1 (2), 123-128 (2002).
5 Prosini, P.P., Lisi, M., Zane, D., Pasquali, M., "Determination of the chemical diffusion coefficient of lithium in LiFePO4", Solid State Ionics, 148 (1/2), 45-51 (2002).
6 Yang, S.F., Zavalij, P.Y., Whittingham, M.S., "Hydrothermal synthesis of lithium iron phosphate cathodes", Electrochem. Commun., 3 (9), 505-508 (2001).
7 Lee, J., Teja, A.S., "Characteristics of lithium iron phosphate (Li-FePO4) particles synthesized in subcritical and supercritical water", Supercrit. Fluids, 35 (1), 83-90 (2005). |