Si anode with high initial Coulombic efficiency, long cycle life, and superior rate capability by integrated utilization of graphene and pitch-based carbon

被引:1
作者
Li, Hai [1 ]
Li, Zhao [2 ]
Qi, Jie [3 ]
Wang, Ziyang [1 ]
Liu, Song [1 ]
Long, Yu [1 ]
Tan, Yan [1 ]
机构
[1] Tongren Univ, Sch Mat & Chem Engn, Tongren 554300, Guizhou, Peoples R China
[2] Guizhou Zhongke Shinzoom Technol Co Ltd, Tongren 554300, Guizhou, Peoples R China
[3] Sichuan Haichuang Sunway New Energy Technol Co Ltd, Leshan 614000, Sichuan, Peoples R China
关键词
Si; graphene; pitch-based carbon; anode materials; lithium-ion batteries; AT-C; AMORPHOUS-SILICON; FACILE SYNTHESIS; ION; PERFORMANCE; COMPOSITE; NANOPARTICLES; NANOCOMPOSITE; LITHIATION; PARTICLES;
D O I
10.1088/1361-6528/ad5aa3
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
A variety of strategies have been developed to enhance the cycling stability of Si-based anodes in lithium-ion batteries. Although significant progress has been made in enhancing the cycling stability of Si-based anodes, the low initial Coulombic efficiency (ICE) remains a significant challenge to their commercial application. Herein, pitch-based carbon (C) coated Si nanoparticles (NPs) were wrapped by graphene (G) to obtain Si@C/G composite with a small specific surface area of 11.3 m2 g-1, resulting in a high ICE of 91.2% at 500 mA g-1. Moreover, the integrated utilization of graphene and soft carbon derived from the low-cost petroleum pitch strongly promotes the electrical conductivity, structure stability, and reaction kinetics of Si NPs. Consequently, the synthesized Si@C/G with a Si loading of 54.7% delivers large reversible capacity (1191 mAh g-1 at 500 mA g-1), long cycle life over 200 cycles (a capacity retention of 87.1%), and superior rate capability (952 mAh g-1 at 1500 mA g-1). When coupled with a homemade LiNi0.8Co0.1Mn0.1O2 (NCM811) cathode in a full cell, it exhibits a promising cycling stability for 200 cycles. This work presents an innovative approach for the manufacture of Si-based anode materials with commercial application.
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页数:9
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共 49 条
[1]   Pomegranate-like silicon-based anodes self-assembled by hollow-structured Si/void@C nanoparticles for Li-ion batteries with high performances [J].
Chen, Dajin ;
Tao, Chuanying ;
Chen, Tongzhou ;
Liu, Xiaohan ;
Liu, Yong ;
Xu, Gang ;
Han, Gaorong .
NANOTECHNOLOGY, 2021, 32 (09)
[2]   Manipulating Oxidation of Silicon with Fresh Surface Enabling Stable Battery Anode [J].
Ge, Gaofeng ;
Li, Guocheng ;
Wang, Xiancheng ;
Chen, Xiaoxue ;
Fu, Lin ;
Liu, Xiaoxiao ;
Mao, Eryang ;
Liu, Jing ;
Yang, Xuelin ;
Qian, Chenxi ;
Sun, Yongming .
NANO LETTERS, 2021, 21 (07) :3127-3133
[3]   Low temperature growth of graphitic carbon on porous silicon for high-capacity lithium energy storage [J].
Han, Xiang ;
Zhang, Ziqi ;
Chen, Songyan ;
Yang, Yong .
JOURNAL OF POWER SOURCES, 2020, 463
[4]   Surface Oxidation Layer-Mediated Conformal Carbon Coating on Si Nanoparticles for Enhanced Lithium Storage [J].
Hu, Guangwu ;
Yu, Ruohan ;
Liu, Zhenhui ;
Yu, Qiang ;
Zhang, Yuanyuan ;
Chen, Qiang ;
Wu, Jinsong ;
Zhou, Liang ;
Mai, Liqiang .
ACS APPLIED MATERIALS & INTERFACES, 2021, 13 (03) :3991-3998
[5]   Dual Core-Shell Structured Si@SiOx@C Nanocomposite Synthesized via a One-Step Pyrolysis Method as a Highly Stable Anode Material for Lithium-Ion Batteries [J].
Jiang, Bolun ;
Zeng, Shi ;
Wang, Hui ;
Liu, Daotan ;
Qian, Jiangfeng ;
Cao, Yuliang ;
Yang, Hanxi ;
Ai, Xinping .
ACS Applied Materials & Interfaces, 2016, 8 (46) :31611-31616
[6]   Self-healing SEI enables full-cell cycling of a silicon-majority anode with a coulombic efficiency exceeding 99.9% [J].
Jin, Yang ;
Li, Sa ;
Kushima, Akihiro ;
Zheng, Xiaoquan ;
Sun, Yongming ;
Xie, Jin ;
Sun, Jie ;
Xue, Weijiang ;
Zhou, Guangmin ;
Wu, Jiang ;
Shi, Feifei ;
Zhang, Rufan ;
Zhu, Zhi ;
So, Kangpyo ;
Cui, Yi ;
Li, Ju .
ENERGY & ENVIRONMENTAL SCIENCE, 2017, 10 (02) :580-592
[7]   Silicon nanoparticles-graphene paper composites for Li ion battery anodes [J].
Lee, Jeong K. ;
Smith, Kurt B. ;
Hayner, Cary M. ;
Kung, Harold H. .
CHEMICAL COMMUNICATIONS, 2010, 46 (12) :2025-2027
[8]   Rational design of silicon-based composites for high-energy storage devices [J].
Lee, Jung Kyoo ;
Oh, Changil ;
Kim, Nahyeon ;
Hwang, Jang-Yeon ;
Sun, Yang-Kook .
JOURNAL OF MATERIALS CHEMISTRY A, 2016, 4 (15) :5366-5384
[9]   Delicate Structural Control of Si-SiOx-C Composite via High-Speed Spray Pyrolysis for Li-Ion Battery Anodes [J].
Lee, Seung Jong ;
Kim, Hye Jin ;
Hwang, Tae Hoon ;
Choi, Sunghun ;
Park, Sung Hyeon ;
Deniz, Erhan ;
Jung, Dae Soo ;
Choi, Jang Wook .
NANO LETTERS, 2017, 17 (03) :1870-1876
[10]   Porous graphitic carbon materials prepared from cornstarch with the assistance of microwave irradiation [J].
Lei, Hong ;
Wang, Yuhao ;
Huo, Jichuan .
MICROPOROUS AND MESOPOROUS MATERIALS, 2015, 210 :39-45