Constructing adaptive silicon-carbon interconnected network for high-energy lithium-ion batteries

被引:6
作者
Li, Zhaojin [1 ]
Shi, Conghao [1 ]
Liu, Pengfei [1 ]
Di, Yunbo [1 ]
Zhang, Di [1 ]
Wang, Qiujun [1 ]
Sun, Huilan [1 ]
Sun, Qujiang [1 ]
Wang, Bo [1 ]
机构
[1] Hebei Univ Sci & Technol, Sch Mat Sci & Engn, Hebei Key Lab Flexible Funct Mat, Shijiazhuang 050018, Hebei, Peoples R China
基金
中国国家自然科学基金;
关键词
Lithium-ion batteries; Anode material; Silicon/graphite composite material; Silicon-carbon interconnection network; ANODES;
D O I
10.1016/j.carbon.2024.119195
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Nano-silicon (n-Si)/graphite anodes are highly desirable for high-energy lithium-ion batteries. Nevertheless, the high surface energy of n-Si grains is prone to causing serious agglomeration. In this work, the modified n-Si is evenly dispersed on the g-C3N4 carbon mesh that acquired through melamine heat treatment constructing an adaptive Si-carbon interconnection network structure (mSi50/g-C3N4). Ideally, the mSi50/g-C3N4 composite can be well dispersed and fill the gaps in graphite through traditional ball milling processes. The obtained mSi50/gC3N4/Gr composite prevents the accumulation of Si grains which is beneficial for expediting ion transport, improving conductivity and structural stability. As a result, this anode provides a reversible capacity of 621 mAh center dot g- 1 at 0.2 C, with high-capacity retention of 93.3 % after 300 cycles at 1 C and low volume expansion of only 28.6 %. Furthermore, it also maintains excellent cycling stability in full batteries with LiFePO4 cathode. Therefore, constructing the mSi50/g-C3N4 network is an effective strategy to achieve uniform dispersion of Si in graphite and promote larger scale industrialization of n-Si/graphite anode.
引用
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页数:8
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