[1] Zou Y, Wang Y. NiOnanosheets grown on graphene nanosheets as superior anode materials for Liion batteries[J]. Nanoscale,2011,3(5):2615-2620.
[2] Paek S M, Yoo E, Honma I. Enhanced cyclic performance and lithium storage capacity of SnO2/graphene nanoporoue electrodes with threedimensionally delaminated flexible structure[J]. Nano Letters,2008,9(12):72-75.
[3] Poizot P, Grugeon S, Dupont L, et al. Nanosized transitionmetal oxides as negativeelectrode materials for lithiumion batteries[J]. Nature,2000,407(4):496.
[4] 冯传启,马军,李丽,等. NiO/碳纳米管复合材料的制备与电化学性能[J]. 电源技术,2009,33(6):458-461.
[5] Zhou J P, Mi H Y, Wang J D, et al. Preparation and lithium storage performance of NiO/C@CNT anode material[J]. Rare Metal Materials and Engineering,2015,44(9):2109-2113.
[6] Cheng M Y, Pan C J, Wang H. Highlydispersed and thermallystable NiO nanoparticles exclusively confined in SBA15: Blockagefree nanochannels[J]. Journal of Materials Chemistry,2009,19(6):5193-5196.[7] Hara M, Kondo T, Komoda M, et al. Cu2O as a photocatalyst for overall water splitting under visible light irradiation[J]. Chemical Communications,1998,3(4):357-358.
[8] Kim K Y, Lee S H, Yan Y W. Controlled synthesis of aligned NiNiO coreshell nanowire arrays on glass substrates as a new supercapacitorelectrode[J]. RSC Advances,2012,2(7):8281-8283.
[9] Liu L X, Guo Y Y, Wang Y P, et al. Hollow NiO nanotubes synthesized by biotemplates as the high performance anode materials of lithiumion batteries[J]. Electrochimica Acta,2013,114(8):42-47.
[10] Wu J, Yin W J, Liu W W, et al. High performance NiO nanosheets anchored on threedimensional nitrogen doped carbon nanotubes as a binderfree anode for lithium ion batteries[J]. Journal of Materials Chemistry A,2016,4(6):10940-10947.