Graphene/Li-ion battery

被引:51
|
作者
Kheirabadi, Narjes [1 ]
Shafiekhani, Azizollah [2 ,3 ]
机构
[1] IAU, No Tehran Branch, Dept Phys, Tehran 1667934783, Iran
[2] Alzahra Univ, Dept Phys, Tehran 1993893973, Iran
[3] Inst Res Fundamental Sci IPM, Sch Phys, Tehran, Iran
关键词
LITHIUM STORAGE; LI IONS; GRAPHITE; CARBON; CAPACITY; MECHANISM; INSERTION; ANODES; STATES;
D O I
10.1063/1.4771923
中图分类号
O59 [应用物理学];
学科分类号
摘要
Density function theory calculations were carried out to clarify storage states of Lithium (Li) ions in graphene clusters. The adsorption energy, spin polarization, charge distribution, electronic gap, surface curvature, and dipole momentum were calculated for each cluster. Li-ion adsorbed graphene, doped by one Li atom is spin polarized, so there would be different gaps for different spin polarization in electrons. Calculation results demonstrated that a smaller cluster between each two larger clusters is preferable, because it could improve graphene Li-ion batteries; consequently, the most proper graphene anode structure has been proposed. (C) 2012 American Institute of Physics. [http://dx.doi.org/10.1063/1.4771923]
引用
收藏
页数:5
相关论文
共 50 条
  • [31] A three-dimensional network of graphene/silicon/graphene sandwich sheets as anode for Li-ion battery
    Feng, Zhijun
    Huang, Chenhui
    Fu, Ang
    Chen, Lun
    Pei, Fei
    He, Yanling
    Fang, Xiaoliang
    Qu, Baihua
    Chen, Xinyi
    Ng, Alan M. C.
    Cui, Jingqin
    THIN SOLID FILMS, 2020, 693
  • [32] Morphology and electrochemical performance of graphene nanosheet array for Li-ion thin film battery
    Thomas, Rajesh
    Rao, K. Yellareswar
    Rao, G. Mohan
    ELECTROCHIMICA ACTA, 2013, 108 : 458 - 464
  • [33] In-situ imaging of Li-ion migration at interfaces in an all solid Li-ion battery
    Takata, Keiji
    Osaka, Ryuma
    Matsushita, Yuki
    Nakanishi, Taiki
    SURFACE AND INTERFACE ANALYSIS, 2020, 52 (12) : 1029 - 1033
  • [34] Reduced Graphene Oxide Films with Ultrahigh Conductivity as Li-Ion Battery Current Collectors
    Chen, Yanan
    Fu, Kun
    Zhu, Shuze
    Luo, Wei
    Wang, Yanbin
    Li, Yiju
    Hitz, Emily
    Yao, Yonggang
    Dai, Jiaqi
    Wan, Jiayu
    Danner, Valencia A.
    Li, Teng
    Hu, Liangbing
    NANO LETTERS, 2016, 16 (06) : 3616 - 3623
  • [35] Graphene modified copper current collector for enhanced electrochemical performance of Li-ion battery
    Kim, Hye Ryeon
    Choi, Won Mook
    SCRIPTA MATERIALIA, 2018, 146 : 100 - 104
  • [36] High Voltage Li-Ion Battery Using Exfoliated Graphite/Graphene Nanosheets Anode
    Agostini, Marco
    Brutti, Sergio
    Hassoun, Jusef
    ACS APPLIED MATERIALS & INTERFACES, 2016, 8 (17) : 10850 - 10857
  • [37] Reassembled Graphene-Platelets Encapsulated Silicon Nanoparticles for Li-Ion Battery Anodes
    Yoon, Taegyun
    Cho, Mikyung
    Suh, Young-Woong
    Oh, Eun-Suok
    Lee, Jung Kyoo
    JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, 2011, 11 (11) : 10193 - 10200
  • [38] Remarkable-cycle-performance β-bismuthene/graphene heterostructure anode for Li-ion battery
    Shouzheng Wang
    Chunmei Tang
    Yu Huang
    Jiangfeng Gong
    ChineseChemicalLetters, 2022, 33 (08) : 3802 - 3808
  • [39] Remarkable-cycle-performance β-bismuthene/graphene heterostructure anode for Li-ion battery
    Wang, Shouzheng
    Tang, Chunmei
    Huang, Yu
    Gong, Jiangfeng
    CHINESE CHEMICAL LETTERS, 2022, 33 (08) : 3802 - 3808
  • [40] Synthesis of graphene and recovery of lithium from lithiated graphite of spent Li-ion battery
    He, Kai
    Zhang, Zhi-Yuan
    Zhang, Fu-Shen
    WASTE MANAGEMENT, 2021, 124 : 283 - 292