High-rate performance of binder-free LiFePO4 cathode prepared by using various types of conductive carbons

被引:3
作者
Wei, Tingyun [1 ]
Tong, Junkai [2 ]
Gao, Feng [1 ]
Weng, Jingzheng [1 ]
Tong, Qingsong [1 ]
机构
[1] Fujian Normal Univ, Fujian Prov Univ Engn Res Ctr Ef ficient Battery M, Coll Chem & Mat Sci, Fuzhou 350007, Peoples R China
[2] Tianjin Univ, State Key Lab Precis Measuring Technol & Instrumen, 92 Weijin Rd, Tianjin 300072, Peoples R China
关键词
LiFePO4; Layered holey graphene; Composite electrode; Binder-free cathode disc; HOLEY GRAPHENE; SUPERCAPACITORS; ELECTRODES; COMPOSITE; CAPACITY; SULFUR; DENSE;
D O I
10.1016/j.jelechem.2022.116966
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
A series of binder-free LiFePO4 cathode discs prepared by dry-pressing the mixture of LiFePO4 and various con-ductive carbon. Among those cathode discs, the cathode disc with thickness of 70 mu m, prepared at the pressure of 334 MPa and composed of LiFePO4 and layered holey graphene (CDLL-70 disc) exhibits the best electro-chemical performance in the electrolyte of 1.0 mol L-1 lithium bis(trifluoromethanesulphonyl)imide and 0.1 mol/L LiNO3 in ethylene glycol dimethyl ether:dioxolane in 1:1 wt%. LiFePO4 in the CDLL-70 disc exhibits the stable olivine structure (Space group: Pmnb, JCPDS 40-1499) after charge-discharged for 100 cycles. The CDLL-70 disc exhibits excellent electrical contact between LHG matrix and LiFePO4 particles for homogeneous structure. The CDLL-70 disc exhibits the discharge capacity of 111.7 mAh cm-3 (138.2 mAh g-1) (1st cycle) and 111.2 mAh cm-3 (137.5 mAh g-1) (150th cycle), respectively. The capacity retention rate of the CDLL-70 disc in 150 cycles is 99.5 %. Therefore, the CDLL-70 disc exhibits the excellent rate performance and cycle sta-bility for its excellent flexibility.
引用
收藏
页数:11
相关论文
共 50 条
[41]   Etched Colloidal LiFePO4 Nanoplatelets toward High-Rate Capable Li-Ion Battery Electrodes [J].
Paolella, Andrea ;
Bertoni, Giovanni ;
Marras, Sergio ;
Dilena, Enrico ;
Colombo, Massimo ;
Prato, Mirko ;
Riedinger, Andreas ;
Povia, Mauro ;
Ansaldo, Alberto ;
Zaghib, Karim ;
Manna, Liberato ;
George, Chandramohan .
NANO LETTERS, 2014, 14 (12) :6828-6835
[42]   Carbon-coated LiFePO4–carbon nanotube electrodes for high-rate Li-ion battery [J].
Le Thanh Nguyen Huynh ;
Thi Thuy Dung Tran ;
Hoang Hai Au Nguyen ;
Thi Thu Trang Nguyen ;
Van Man Tran ;
Akhil Grag ;
My Loan Phung Le .
Journal of Solid State Electrochemistry, 2018, 22 :2247-2254
[43]   Synthesis and performance of high tap density LiFePO4/C cathode materials doped with copper ions [J].
Chang, Zhao-Rong ;
Lv, Hao-Jie ;
Tang, Hongwei ;
Yuan, Xiao-Zi ;
Wang, Haijiang .
JOURNAL OF ALLOYS AND COMPOUNDS, 2010, 501 (01) :14-17
[44]   Regeneration of spent LiFePO4 as a high-performance cathode material by a simultaneous coating and doping strategy [J].
Tong, Hui ;
Li, Yi ;
Mao, Gaoqiang ;
Wang, Chaolei ;
Yu, Wanjing ;
Liu, Yong ;
Liu, Mudan .
INTERNATIONAL JOURNAL OF MINERALS METALLURGY AND MATERIALS, 2023, 30 (06) :1162-1170
[45]   Solvothermal synthesis of LiFePO4 nanorods as high-performance cathode materials for lithium ion batteries [J].
Wang, Yajing ;
Zhu, Bo ;
Wang, Yanming ;
Wang, Fei .
CERAMICS INTERNATIONAL, 2016, 42 (08) :10297-10303
[46]   Synthesis of LiFePO4/graphene microspheres while avoiding restacking of graphene sheet's for high-rate lithium-ion batteries [J].
Kim, Myeong-Seong ;
Lee, Geon-Woo ;
Lee, Suk-Woo ;
Jeong, Jun Hui ;
Mhamane, Dattakumar ;
Roh, Kwang Chul ;
Kim, Kwang-Bum .
JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 2017, 52 :251-259
[47]   Binder-free Ge-three dimensional graphene electrodes for high-rate capacity Li-ion batteries [J].
Wang, C. D. ;
Chui, Y. S. ;
Li, Y. ;
Chen, X. F. ;
Zhang, W. J. .
APPLIED PHYSICS LETTERS, 2013, 103 (25)
[48]   Rational Design of Atomic-Layer-Deposited LiFePO4 as a High-Performance Cathode for Lithium-Ion Batteries [J].
Liu, Jian ;
Banis, Mohammad N. ;
Sun, Qian ;
Lushington, Andrew ;
Li, Ruying ;
Sham, Tsun-Kong ;
Sun, Xueliang .
ADVANCED MATERIALS, 2014, 26 (37) :6472-6477
[49]   Preparation and characterization of electrospun LiFePO4/carbon complex improving rate performance at high C-rate [J].
Lee, Sei-Hyun ;
Jung, Min- ;
Im, Ji Sun ;
Sheem, Kyou-Yoon ;
Lee, Young-Seak .
RESEARCH ON CHEMICAL INTERMEDIATES, 2010, 36 (6-7) :591-602
[50]   Understanding the influence of conductive carbon additives surface area on the rate performance of LiFePO4 cathodes for lithium ion batteries [J].
Qi, Xin ;
Blizanac, Berislav ;
DuPasquier, Aurelien ;
Oljaca, Miodrag ;
Li, Jie ;
Winter, Martin .
CARBON, 2013, 64 :334-340