Rational design of silicon-based composites for high-energy storage devices

被引:181
|
作者
Lee, Jung Kyoo [1 ]
Oh, Changil [1 ]
Kim, Nahyeon [1 ]
Hwang, Jang-Yeon [2 ]
Sun, Yang-Kook [2 ]
机构
[1] Dong A Univ, Dept Chem Engn, Busan 604714, South Korea
[2] Hanyang Univ, Dept Energy Engn, Seoul 133791, South Korea
基金
新加坡国家研究基金会;
关键词
LI-ION BATTERIES; HIGH-CAPACITY ANODES; LITHIUM-ION; FLUOROETHYLENE CARBONATE; CATHODE MATERIALS; PRACTICAL APPLICATION; NEGATIVE ELECTRODES; SULFUR BATTERIES; SI NANOPARTICLES; RECENT PROGRESS;
D O I
10.1039/c6ta00265j
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
Silicon-based composites are very promising anode materials for boosting the energy density of lithium-ion batteries (LIBs). These silicon-based anodes can also replace the dendrite forming lithium metal anodes in lithium metal-free Li-O-2 and Li-S batteries, which can offer energy content far beyond that of current LIBs. However, it is challenging to design silicon-based materials for use as anodes in real energy storage devices. In this review, we discuss how to boost the energy content of LIBs, the pros and cons of silicon-based anodes, and challenges associated with silicon-based anodes. A major focus of this review is on the rational design of silicon-based composite anodes to address the outstanding issues. In addition, high energy LIBs and Li-S batteries that employ silicon-based anodes are introduced and discussed.
引用
收藏
页码:5366 / 5384
页数:19
相关论文
共 50 条
  • [1] Rational Design of Silicon-Based Zinc Ionophores
    Yamada, Kei
    Deb, Arghya
    Shoba, Veronika M.
    Lim, Donghyun
    Maji, Basudeb
    Modell, Ashley E.
    Choudhary, Amit
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2022, 61 (23)
  • [2] Comparison of commercial silicon-based anode materials for the design of a high-energy lithium-ion battery
    Minhong Choi
    Eunhan Lee
    Jaekyung Sung
    Namhyung Kim
    Minseong Ko
    Nano Research, 2024, 17 : 5270 - 5277
  • [3] Comparison of commercial silicon-based anode materials for the design of a high-energy lithium-ion battery
    Choi, Minhong
    Lee, Eunhan
    Sung, Jaekyung
    Kim, Namhyung
    Ko, Minseong
    NANO RESEARCH, 2024, 17 (06) : 5270 - 5277
  • [4] Rational Design of a Multifunctional Binder for High-Capacity Silicon-Based Anodes
    Cao, Peng-Fei
    Yang, Guang
    Li, Bingrui
    Zhang, Yiman
    Zhao, Sheng
    Zhang, Shuo
    Erwin, Andrew
    Zhang, Zhengcheng
    Sokolov, Alexei P.
    Nanda, Jagjit
    Saito, Tomonori
    ACS ENERGY LETTERS, 2019, 4 (05): : 1171 - 1180
  • [5] Rational design of graphene-based nanomaterials and their application in energy storage devices
    Luo, Bin
    Wang, Bin
    Zhi, Linjie
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2013, 246
  • [6] Revolutionizing Energy Storage: The Rise of Silicon-based Solutions
    A. Felix Sahayaraj
    Silicon, 2023, 15 : 5467 - 5483
  • [7] Revolutionizing Energy Storage: The Rise of Silicon-based Solutions
    Sahayaraj, A. Felix
    SILICON, 2023, 15 (13) : 5467 - 5483
  • [8] A Step toward High-Energy Silicon-Based Thin Film Lithium Ion Batteries
    Jimenez, Antonia Reyes
    Kloepsch, Richard
    Wagner, Ralf
    Rodehorst, Uta C.
    Kolek, Martin
    Noelle, Roman
    Winter, Martin
    Placke, Tobias
    ACS NANO, 2017, 11 (05) : 4731 - 4744
  • [9] Computational screening of several silicon-based high-energy hexanitrohexaazaisowurtzitane-like derivatives
    Tan, Bisheng
    Huang, Hui
    Huang, Ming
    Long, Xinping
    Li, Jinshan
    Yuan, Xiaodong
    Xu, Ruijuan
    JOURNAL OF FLUORINE CHEMISTRY, 2014, 158 : 29 - 37
  • [10] Basic Principles for Rational Design of High-Performance Nanostructured Silicon-Based Thermoelectric Materials
    Yang, Chun Cheng
    Li, Sean
    CHEMPHYSCHEM, 2011, 12 (18) : 3614 - 3618