共 151 条
- [81] Ryu J., Hong D., Choi S., Park S., Synthesis of ultrathin Si nanosheets from natural clays for lithium-ion battery anodes, ACS Nano, 10, pp. 2843-2851, (2016)
- [82] Karuppiah S., A scalable silicon nanowires-grown-on-graphite composite for high-energy lithium batteries, ACS Nano, 14, pp. 12006-12015, (2020)
- [83] Zhang Z., Tailoring the interfaces of silicon/carbon nanotube for high rate lithium-ion battery anodes, J. Power Sources, 450, (2020)
- [84] Nguyen Q.H., Kim I.T., Hur J., Core-shell Si@ c-PAN particles deposited on graphite as promising anode for lithium-ion batteries, Electrochim. Acta, 297, pp. 355-364, (2019)
- [85] Li X., Uniform yolk–shell structured Si–C nanoparticles as a high performance anode material for the Li-ion battery, Chem. Commun, 56, pp. 364-367, (2020)
- [86] Zhang L., A yolk-shell structured silicon anode with superior conductivity and high tap density for full lithium-ion batteries, Angew. Chem. Int. Ed, 58, pp. 8824-8828, (2019)
- [87] Gao P., Tang H., Xing A., Bao Z., Porous silicon from the magnesiothermic reaction as a high-performance anode material for lithium ion battery applications, Electrochim. Acta, 228, pp. 545-552, (2017)
- [88] Zhao X., Lehto V.-P., Challenges and prospects of nanosized silicon anodes in lithium-ion batteries, Nanotechnology, 32, (2020)
- [89] Beaulieu L., Larcher D., Dunlap R., Dahn J., Reaction of Li with grain-boundary atoms in nanostructured compounds, J. Electrochem. Soc, 147, (2000)
- [90] Dou F., Shi L., Chen G., Zhang D., Silicon/carbon composite anode materials for lithium-ion batteries, Electrochem. Energy Rev, 2, pp. 149-198, (2019)