共 18 条
- [11] MA Y, TANG H, ZHANG Y, Et al., Facile synthesis of Si-C nanocomposites with yolk-shell structure as an anode for lithium-ion batteries, J Alloy Compd, 704, pp. 599-606, (2017)
- [12] MISHRA K, ZHENG J, PATEL R, Et al., High performance porous Si@C anodes synthesized by low temperature aluminothermic reaction, Electrochim Acta, 269, pp. 509-516, (2018)
- [13] FURQUAN M, KHATRIBAIL A R, VIJAYALAKSHMI S, Et al., Efficient conversion of sand to nano-silicon and its energetic Si-C composite anode design for high volumetric capacity lithium-ion battery, J Power Sources, 382, 1, pp. 56-68, (2018)
- [14] LIU N, LU Z, ZHAO J, Et al., A pomegranate-inspired nanoscale design for large-volume-change lithium battery anodes, Nat Nanotechnol, 9, 3, pp. 187-192, (2014)
- [15] RUTTERT M, HOLTSTIEGE F, HUSKER J, Et al., Hydrothermal-derived carbon as a stabilizing matrix for improved cycling performance of silicon-based anodes for lithium-ion full cells, Beilstein J Nanotech, 9, pp. 2381-2395, (2018)
- [16] JIANG Y, CHEN S, MU D, Et al., A three-dimensional network structure Si/C anode for Li-ion batteries, J Mater Sci, 52, pp. 10950-10958, (2017)
- [17] HU L, LUO B, WU C, Et al., Yolk-shell Si/C composites with multiple Si nanoparticles encapsulated into double carbon shells as lithium-ion battery anodes, J Energy Chem, 32, pp. 124-130, (2019)
- [18] ZHOU Z, LONG P, LIU Y, Et al., From sand to fast and stable silicon anode: Synthesis of hollow Si@void@C yolk-shell microspheres by aluminothermic reduction for lithium storage, Chin Chem Lett, 30, 3, pp. 610-617, (2019)