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Constructing a Stable Integrated Silicon Electrode with Efficient Lithium Storage Performance through Multidimensional Structural Design

delete2024-02-06
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PRE
AI
F
Fenghui Li
H
Hao Wu
文
文洪 (Hong Wen)
C
Chen Wang
C
Chaoqi Shen
L
Liwei Su
刘
刘胜 (Sheng Liu) *
Y
Yifan Chen
L
Lianbang Wang *
DOI:10.1021/acsami.3c17326delete
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摘要

摘要

En 中文
Silicon (Si) stands out as a highly promising anode material for next-generation lithium-ion batteries. However, its low intrinsic conductivity and the severe volume changes during the lithiation/delithiation process adversely affect cycling stability and hinder commercial viability. Rational design of electrode architecture to enhance charge transfer and optimize stress distribution of Si is a transformative way to enhance cycling stability, which still remains a great challenge. In this work, we fabricated a stable integrated Si electrode by combining two-dimensional graphene sheets (G), one-dimensional Si nanowires (SiNW), and carbon nanotubes (CNT) through the cyclization process of polyacrylonitrile (PAN). The integrated electrode features a G/SiNW framework enveloped by a conformal coating consisting of cyclized PAN (cPAN) and CNT. This configuration establishes interconnected electron and lithium-ion transport channels, coupled with a rigid-flexible encapsulated coating, ensuring both high conductivity and resistance against the substantial volume changes in the electrode. The unique multidimensional structural design enhances the rate performance, cyclability, and structural stability of the integrated electrode, yielding a gravimetric capacity (based on the total mass of the electrode) of 650 mAh g(-1) after 1000 cycles at 3.0 A g(-1). When paired with a commercial LiNi0.5Co0.2Mn0.3O2 cathode, the resulting full cell retains 84.8% of its capacity after 160 cycles at 2.0 C and achieves an impressive energy density of 435 Wh kg(-1) at 0.5 C, indicating significant potential for practical applications. This study offers valuable insights into comprehensive electrode structure design at the electrode level for Si-based materials.
Keyword:
integrated electrode
multidimensionalstructural design
PAN cyclization process
lithium-ionbattery
silicon anode

期刊

ACS Applied Materials and Interfaces 封面图
ACS Applied Materials and Interfaces
IF:
8.2
论文数:
6.1W
被引数:
38.7W

机构

H
hangzhou vocational &technical college
学者数:
235
论文数: 243
被引数: 0
Z
zhejiang university of technology
学者数:
3.3W
论文数: 2.0W
被引数: 22
N
nankai university
学者数:
4.8W
论文数: 3.3W
被引数: 74
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