Ultrafine SiOx/C nanospheres and their pomegranate-like assemblies for high-performance lithium storage
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Ge, Peipei
Liu, Zhenhui
Xu, Ming
Yang, Wei
Zhou, Liang
Zhao, Dongyuan
Mai, Liqiang
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Abstract
The application of silicon oxide (SiOx)-based anode materials in lithium-ion batteries is hampered by their low conductivity and large volume expansion. To tackle both issues, ultrafine SiOx/C composite nanospheres with a uniform diameter of ∼40 nm were fabricated through a tri-component co-assembly approach. The ultrafine SiOx/C nanospheres demonstrated a high specific capacity of 895 mA h g-1 after 200 cycles at 200 mA g-1. At a high current density of 1 A g-1, a capacity of 828 mA h g-1 could be achieved after 1000 cycles. The ultrafine SiOx/C nanospheres were further assembled into pomegranate-like assemblies through spray drying. The resultant pomegranate-like structure manifested a discharge capacity of 1024 mA h g-1 after 200 cycles at 500 mA g-1.
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Journal of Materials Chemistry A
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6
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30
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Macromolecular and materials chemistry
Materials engineering
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Chemistry, Physical
Energy & Fuels
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Yu, Q; Ge, P; Liu, Z; Xu, M; Yang, W; Zhou, L; Zhao, D; Mai, L, Ultrafine SiOx/C nanospheres and their pomegranate-like assemblies for high-performance lithium storage, Journal of Materials Chemistry A, 2018, 6 (30), pp. 14903-14909