Binder-Free, Flexible, and Self-Standing Non-Woven Fabric Anodes Based on Graphene/Si Hybrid Fibers for High-Performance Li-Ion Batteries

被引:38
作者
Shao, Feng [1 ]
Li, Hong [1 ]
Yao, Lu [1 ]
Xu, Shiwei [1 ]
Li, Gang [1 ]
Li, Bin [1 ]
Zou, Cheng [1 ]
Yang, Zhi [1 ]
Su, Yanjie [1 ]
Hu, Nantao [1 ]
Zhang, Yafei [1 ]
机构
[1] Shanghai Jiao Tong Univ, Sch Elect Informat & Elect Engn, Minist Educ, Key Lab Thin Film & Microfabricat Technol, Shanghai 200240, Peoples R China
基金
中国国家自然科学基金; 上海市自然科学基金;
关键词
Li-ion batteries; Si anode; graphene fibers fabric; self-standing; high-areal capacity; LITHIUM; NANOCOMPOSITES; COMPOSITE; ELECTRODE;
D O I
10.1021/acsami.1c04277
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
High-capacity silicon (Si) is recognized as a potential anode material for high-performance lithium-ion batteries (LIBs). Unfortunately, large volume expansion during discharge/charge processes hinders its areal capacity. In this work, we design a flexible graphene-fiber-fabric (GFF)-based three-dimensional conductive network to form a binder-free and self-standing Si anode for high-performance LIBs. The Si particles are strongly wrapped in graphene fibers. The substantial void spaces caused by the wrinkled graphene in fibers enable effective accommodation of the volume change of Si during lithiation/delithiation processes. The GFF/Si-37.5% electrode exhibits an excellent cyclability with a specific capacity of 920 mA h g(-1) at a current density of 0.4 mA cm(-2) after 100 cycles. Furthermore, the GFF/Si-29.1% electrode exhibits an excellent reversible capacity of 580 mA h g(-1) at a current density of 0.4 mA cm(-2) after 400 cycles. The capacity retention of the GFF/Si-29.1% electrode is up to 96.5%. More importantly, the GFF/Si-37.5% electrode with a mass loading of 13.75 mg cm(-2) achieves a high areal capacity of 14.3 mA h cm(-2), which outperforms the reported self-standing Si anode. This work provides opportunities for realizing a binder-free, flexible, and self-standing Si anode for high-energy LIBs.14.3
引用
收藏
页码:27270 / 27277
页数:8
相关论文
共 38 条
[11]   Designed synthesis of SnO2-C hollow microspheres as an anode material for lithium-ion batteries [J].
Hu, Lin-Lin ;
Yang, Li-Ping ;
Zhang, Dong ;
Tao, Xian-Sen ;
Zeng, Chen ;
Cao, An-Min ;
Wan, Li-Jun .
CHEMICAL COMMUNICATIONS, 2017, 53 (81) :11189-11192
[12]   Ultrastable Silicon Anode by Three-Dimensional Nanoarchitecture Design [J].
Huang, Gang ;
Han, Jiuhui ;
Lu, Zhen ;
Wei, Daixiu ;
Kashani, Hamzeh ;
Watanabe, Kentaro ;
Chen, Mingwei .
ACS NANO, 2020, 14 (04) :4374-4382
[13]   One-Pot Synthesis of Tin-Embedded Carbon/Silica Nanocomposites for Anode Materials in Lithium-Ion Batteries [J].
Hwang, Jongkook ;
Woo, Seung Hee ;
Shim, Jongmin ;
Jo, Changshin ;
Lee, Kyu Tae ;
Lee, Jinwoo .
ACS NANO, 2013, 7 (02) :1036-1044
[14]   Superior Lithium Electroactive Mesoporous Si@Carbon Core-Shell Nanowires for Lithium Battery Anode Material [J].
Kim, Hyesun ;
Cho, Jaephil .
NANO LETTERS, 2008, 8 (11) :3688-3691
[15]  
Ko M, 2016, NAT ENERGY, V1, DOI [10.1038/nenergy.2016.113, 10.1038/NENERGY.2016.113]
[16]   Nano/Microstructured Silicon-Graphite Composite Anode for High-Energy-Density Li-Ion Battery [J].
Li, Peng ;
Hwang, Jang-Yeon ;
Sun, Yang-Kook .
ACS NANO, 2019, 13 (02) :2624-2633
[17]   Silicon Anode with High Initial Coulombic Efficiency by Modulated Trifunctional Binder for High-Areal-Capacity Lithium-Ion Batteries [J].
Li, Zeheng ;
Zhang, Yaping ;
Liu, Tiefeng ;
Gao, Xuehui ;
Li, Siyuan ;
Ling, Min ;
Liang, Chengdu ;
Zheng, Junchao ;
Lin, Zhan .
ADVANCED ENERGY MATERIALS, 2020, 10 (20)
[18]   Interweaving 3D Network Binder for High-Areal-Capacity Si Anode through Combined Hard and Soft Polymers [J].
Liu, Tiefeng ;
Chu, Qiaoling ;
Yan, Cheng ;
Zhang, Shanqing ;
Lin, Zhan ;
Lu, Jun .
ADVANCED ENERGY MATERIALS, 2019, 9 (03)
[19]   Oxygen Clusters Distributed in Graphene with "Paddy Land" Structure: Ultrahigh Capacitance and Rate Performance for Supercapacitors [J].
Liu, Zheng ;
Jiang, Lili ;
Sheng, Lizhi ;
Zhou, Qihang ;
Wei, Tong ;
Zhang, Bingsen ;
Fan, Zhuangjun .
ADVANCED FUNCTIONAL MATERIALS, 2018, 28 (05)
[20]   Si and Ge-Based Anode Materials for Li-, Na-, and K-Ion Batteries: A Perspective from Structure to Electrochemical Mechanism [J].
Loaiza, Laura C. ;
Monconduit, Laure ;
Seznec, Vincent .
SMALL, 2020, 16 (05)