共 18 条
- [1] LIN L D, XU X N, CHU C X, Et al., Mesoporous amorphous silicon: A simple synthesis of a high-rate and long-life anode material for lithium-ion batteries, Angew Chem Int Ed, 55, 45, pp. 14063-14066, (2016)
- [2] ZHANG Rui, JIANG Xunyong, J Chin Ceram Soc, 41, 2, pp. 159-164, (2013)
- [3] LIU N, WU H, MCDOWELL M T, Et al., A yolk-shell design for stabilized and scalable Li-ion battery alloy anodes, Nano Lett, 12, 6, pp. 3315-3321, (2012)
- [4] CHOI S, KWON T W, COSKUN A, Et al., Highly elastic binders integrating polyrotaxanes for silicon microparticle anodes in lithium ion batteries, Science, 357, pp. 279-283, (2017)
- [5] WANG M S, FAN L Z, HUANG M, Et al., Conversion of diatomite to porous Si/C composites as promising anode materials for lithium-ion batteries, J Power Sources, 219, pp. 29-35, (2012)
- [6] MIAO R, YANG J, WU Y N, Et al., Nanoporous silicon from low-cost natural clinoptilolite for lithium storage, RSC Adv, 5, 70, pp. 56772-56779, (2015)
- [7] RYU J, HONG D, Ch OI S, Et al., Synthesis of ultrathin Si nanosheets from natural clays for lithium-ion battery anodes, ACS Nano, 10, 2, (2016)
- [8] LIN N, HAN Y, ZHOU J, Et al., A low temperature molten salt process for aluminothermic reduction of silicon oxides to crystalline Si for Li-ion batteries, Energy Environ Sci, 8, 11, pp. 3187-3191, (2015)
- [9] Mingyuan, YANG Shaobin, DONG Wei, Et al., J Chin Ceram Soc, 49, 7, pp. 1457-1465, (2021)
- [10] JUNG Y S, LEE K T, OH S M., Si-carbon core-shell composite anode in lithium secondary batteries, Electrochim Acta, 52, 24, pp. 7061-7067, (2007)