Study of LiFePO4 Electrode Morphology for Li-Ion Battery Performance

被引:0
作者
Buga, Mihaela [1 ]
Rizoiu, Alexandru [1 ]
Bubulinca, Constantin [1 ]
Badea, Silviu [1 ]
Balan, Mihai [1 ]
Ciocan, Alexandru [1 ]
机构
[1] Natl R&D Inst Cryogen & Isotop Technol ICIT, 4 Uzinei Str, Ramnicu Valcea 240050, Romania
来源
REVISTA DE CHIMIE | 2018年 / 69卷 / 03期
关键词
lithium-ion battery; LiFePO4; roll-to-roll; electrode morphology; LITHIUM-ION; HYDROTHERMAL SYNTHESIS; CATHODE; ENERGY; LICOO2;
D O I
暂无
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The paper focuses on the development of lithium-ion battery cathode based on lithium iron phosphate (LiFePO4). Li-ion battery cathodes were manufactured using the new Battery R&D Production Line from ROM-EST Centre, the first and only facility in Romania, capable of fabricating the industry standard 18650 lithium-ion cells, customized pouch cells and CR2032 cells. The cathode configuration contains acetylene black (AB), LiFePO4, polyvinylidene fluoride (PVdF) as binder and N-Methyl-2-pyrrolidone (NMP) as solvent. X-ray diffraction measurements and SEM-EDS analysis were conducted to obtain structural and morphological information for the as-prepared electrodes.
引用
收藏
页码:549 / 552
页数:4
相关论文
共 50 条
  • [41] Study of Li-Ion Diffusion and Phase Transition in Cathode of Li-Ion Battery
    Kim, Sooil
    Kim, Dongchoul
    [J]. TRANSACTIONS OF THE KOREAN SOCIETY OF MECHANICAL ENGINEERS B, 2013, 37 (07) : 665 - 667
  • [42] Nanostructured Electrode Materials for Li-ion Battery
    Balaya, Palani
    Saravanan, Kuppan
    Hariharan, Srirama
    [J]. ENERGY HARVESTING AND STORAGE: MATERIALS, DEVICES, AND APPLICATIONS, 2010, 7683
  • [43] In-situ preparation of silk-cocoon derived carbon and LiFePO4 nanocomposite as cathode material for Li-ion battery
    Gangaraju, Vinay
    Shastri, Mahesh
    Shetty, Krushitha
    Marilingaiah, Navya Rani
    Anantharaju, K. S.
    Shivaramu, Prasanna Doddakunche
    Rangappa, Dinesh
    [J]. CERAMICS INTERNATIONAL, 2022, 48 (23) : 35657 - 35665
  • [44] Controllable synthesis, characterization and lithium ion battery performance of LiFePO4 nanosheets
    Lin, Shengxuan
    Ge, Quan
    Cao, Yirong
    Qin, Wei
    Wen, Xiaogang
    [J]. MATERIALS EXPRESS, 2016, 6 (04) : 351 - 356
  • [45] Graphite/Li2ZrO3 anode for a LiFePO4 battery
    Natalia, Viona
    Rahmawati, Fitria
    Wulandari, Arinta
    Purwanto, Agus
    [J]. CHEMICAL PAPERS, 2019, 73 (03): : 757 - 766
  • [46] The Investigation of Humics as a Binder for LiFePO4 Cathode in Lithium Ion Battery
    Han, Guihong
    Yang, Shuzhen
    Liu, Jiongtian
    Huang, Yanfang
    [J]. CHARACTERIZATION OF MINERALS, METALS, AND MATERIALS 2018, 2018, : 31 - 39
  • [47] Surfactant based sol-gel approach to nanostructured LiFePO4 for high rate Li-ion batteries
    Choi, Daiwon
    Kumta, Prashant N.
    [J]. JOURNAL OF POWER SOURCES, 2007, 163 (02) : 1064 - 1069
  • [48] Hydrothermal synthesis of hierarchical LiFePO4 microspheres for lithium ion battery
    Wang, Qi
    Deng, SiXu
    Wang, Hao
    Xie, Ming
    Liu, JingBing
    Yan, Hui
    [J]. JOURNAL OF ALLOYS AND COMPOUNDS, 2013, 553 : 69 - 74
  • [49] A lithium-ion battery based on LiFePO4 and silicon nanowires
    Prosini, Pier Paolo
    Cento, Cinzia
    Rufoloni, Alessandro
    Rondino, Flaminia
    Santoni, Antonino
    [J]. SOLID STATE IONICS, 2015, 269 : 93 - 97
  • [50] Structural stability and Li-ion transport property of LiFePO4 under high-pressure
    Dong, Haini
    Guo, Hao
    He, Yu
    Gao, Jian
    Han, Wenze
    Lu, Xia
    Yan, Shuai
    Yang, Ke
    Li, Heping
    Chen, Dongfeng
    Li, Hong
    [J]. SOLID STATE IONICS, 2017, 301 : 133 - 137