2Guo P, Song H, Chen X. Electrochemical performance of graphene nanosheets as anode material for lithium-ion bat teries [J]. Electroehem Commun, 2009,11:1320.
3Kim H, Seo D H, Kim S W, et al. Highly reversible Coa O4/graphene hybrid anode for lithium rechargeable bat- teries[J]. Carbon, 2011,49 : 326.
4Sun B, Chen Z, Kim H S, et al. MnO/C core-shell nano- rods as high capacity anode materials for lithium-ion batte- ries[J]. J Power Sources, 2011,196 : 3346.
5Xiang J Y, Tu J P, Zhang J, et al. Incorporation of MWC- NTs into leaf-like CuO nanoplates for superior reversible Li- ion storage[J]. Electrochem Commun, 2010,12 : 1103.
6Xiang J Y, Tu J P, Yuan Y F, et al. Improved electroche- mical performances of core-shell Cu2O/Cu composite pre- pared by a simple one-step method[J]. Electroehem Com- mun, 2009,11 : 262.
7Pan Q, Wang M, et al. Novel method to deposit metal par- ticles on transition metal oxide films and its application in lithium-ion batteries[J]. Electroch Acta, 2008,54 : 197.
8Huang X H, Tu J P, Zhang C Q, et al. Hollow micro- spheres of NiO as anode materials for lithium-ion batteries [J]. Electroch Acta, 2010,55 : 8981.
9Huang X H, Xia X H, Yuan Y F, et al. Porous ZnO nanosheets grown on copper substrates as anodes for lithium ion batteries[J]. Electroch Acta, 2011,56 : 4960.
10Hu Y, Huang X, Wang K, et al. Kirkendall effect based growth of dendrite-shaped CuO hollow micro/nanostructures for lithium-ion battery anodes[J]. J Solid State Chem,2010,183:662.