4.1 Article

Constructing a pea-pod-like nanostructure to provide valid conductive matrix and volume change accommodation for silicon anode in lithium ion batteries

期刊

GREEN CHEMICAL ENGINEERING
卷 2, 期 3, 页码 327-335

出版社

KEAI PUBLISHING LTD
DOI: 10.1016/j.gce.2021.07.005

关键词

Silicon; Graphene; Anode material; Freeze-drying; Lithium-ion battery

类别

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资金

  1. National Natural Science Foundation of China [21703057]
  2. He'nan Postdoctoral Science Foundation [1902040, 00182023]
  3. Foundation of the Programs for Science and Technology Development of He'nan province [202102210107, 192102210016, 192102310249]
  4. Xinxiang city [GG2019011]
  5. Natural Science Foundation of Shanghai [19ZR1424600]

向作者/读者索取更多资源

A pea-pod-like composite of graphene-wrapped silicon nanoparticles was successfully prepared using freeze-drying and solvothermal methods, showing excellent electrochemical performance.
A pea-pod-like composite of graphene-wrapped silicon nanoparticles (P-Si@GS) was successfully prepared via a new and facial technique utilizing freeze-drying and subsequent solvothermal process. The cross-linked pods formed by curled few-layer graphene sheets constituted a conductive network, in which silicon nanoparticles were tightly wrapped. The unique graphene-wrapped structure with mesopores on the surface can effectively enhance the conductivity of silicon, alleviate its volume effect and provide rapid transport channels for electrons and ions, thus resulting in excellent electrochemical performance. The strategy of combining freeze-drying and solvothermal methods is facile, low-cost and effective, which provides new ideas for the preparation of highperformance graphene-wrapped nanoparticles composites.

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