Journal of Inorganic Materials, Volume. 37, Issue 9, 1016(2022)
[1] Y CAI, H E WANG, X ZHAO et al. Walnut-like porous core/shell TiO2 with hybridized phases enabling fast and stable lithium storage. ACS Applied Materials & Interfaces, 10652-10663(2017).
[3] Y LU, X RONG, Y S HU et al. Research and development of advanced battery materials in China. Energy Storage Materials, 144-153(2019).
[8] Z SUN, G WANG, T CAI et al. Sandwich-structured graphite- metallic silicon@C nanocomposites for Li-ion batteries. Electrochimica Acta, 299-306(2016).
[12] N LIU, K HUO, M T MCDOWELL et al. Rice husks as a sustainable source of nanostructured silicon for high performance Li-ion battery anodes. Scientific Reports, 1-7(2013).
[14] H WU, G CHAN, J W CHOI et al. Stable cycling of double-walled silicon nanotube battery anodes through solid-electrolyte interphase control. Nature Nanotechnolagy, 310-315(2012).
[15] Z ZHANG, H LI. Sequential-template synthesis of hollowed carbon polyhedron@SiC@Si for lithium-ion battery with high capacity and electrochemical stability. Applied Surface Science(2020).
[17] Y BAI, M ZENG, X WU et al. Three-dimensional cage-like Si@ZIF-67 core-shell composites for high-performance lithium storage. Applied Surface Science(2020).
[20] M H PARK, M G KIM, J JOO et al. Silicon nanotube battery anodes. Nano Letters, 3844-3847(2009).
[27] C LI, Y Y WANG, H Y LI et al. Weaving 3D highly conductive hierarchically interconnected nanoporous web by threading MOF crystals onto multi walled carbon nanotubes for high performance Li-Se battery. Journal of Energy Chemistry, 396-404(2021).
[28] J P SONG, L WU, W D DONG et al. MOF-derived nitrogen- doped core-shell hierarchical porous carbon confining selenium for advanced lithium-selenium battery. Nanoscale, 6970-6981(2019).
[32] Z HOU, H LIU, P CHEN et al. Nanocaging silicon nanoparticles into a porous carbon framework toward enhanced lithium-ion storage. Particle & Particle Systems Characterization, 2100107(2021).
[33] Y ZHANG, Y CHENG, J SONG et al. Functionalization-assistant ball milling towards Si/graphene anodes in high performance Li-ion batteries. Carbon, 300-309(2021).
[34] L WANG, Z WANG, L XIE et al. ZIF-67-derived N-doped Co/C nanocubes as high-performance anode materials for lithium-ion batteries. ACS Applied Materials & Interfaces, 16619-16628(2019).
[35] Z TU, G YANG, H SONG et al. Amorphous ZnO quantum dot/mesoporous carbon bubble composites for a high-performance lithium-ion battery anode. ACS Applied Materials & Interfaces, 439-446(2017).
[36] J CUI, Y CUI, S LI et al. Microsized porous SiO
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Nana SU, Jingru HAN, Yinhao GUO, Chenyu WANG, Wenhua SHI, Liang WU, Zhiyi HU, Jing LIU, Yu LI, Baolian SU.
Category: RESEARCH ARTICLE
Received: Dec. 3, 2021
Accepted: --
Published Online: Jan. 12, 2023
The Author Email: LI Yu (yu.li@whut.edu.cn)