Graphene aerogel based positive electrode for lithium ion batteries

被引:0
|
作者
Kuruahmet, Deniz [1 ]
Guler, Aslihan [1 ]
Yildirim, Sidika [1 ,2 ]
Singil, Mustafa Mahmut [1 ]
Gungor, Hatice [1 ]
Uzun, Esma [1 ]
Alkan, Engin [1 ]
Guler, Mehmet Oguz [1 ]
Akbulut, Hatem [1 ]
机构
[1] Sakarya Univ, Fac Engn, Dept Met & Mat Engn, Esentepe Campus, TR-54187 Sakarya, Turkiye
[2] Duzce Univ, Dr Engin Pak Cumayeri Vocat Sch, TR-81700 Cumayeri Duzce, Turkiye
关键词
Graphene aerogel; Lithium ion; NMC-811; Cathode; 3D porous structures; RICH LAYERED CATHODE; NI-RICH; ELECTROCHEMICAL PERFORMANCE; OXIDE CATHODES; ANODE MATERIAL; ENERGY; LINIO2; STABILITY; SPECTROSCOPY; GRAPHITE;
D O I
10.1016/j.est.2024.111479
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
In this study, a composite of LiNi0.8Mn0.1Co0.1O2 nanoparticles (nNMC-811) supported by three-dimensional (3D) graphene aerogel (GA) was prepared to increase the practical energy density and performance capability of high nickel cathodes. The porous LiNi0.8Mn0.1Co0.1O2 nanoparticle/graphene aerogel (nNMC-811/GA) composite is composed of nNMC-811 and graphene that act as a bridge for electron transfer and acceleration of lithium ion diffusion. nNMC-811 and nNMC-811/GA cathodes characterization data with techniques including X-ray diffraction (XRD), Raman spectroscopy, Fourier transform infrared spectra (FT-IR) and X-ray photoelectron spectroscopy (XPS) are discussed. Both Field Emission Scanning Electron Microscopy (FE-SEM) and Transmission Electron Microscopy (TEM) made clear observations of the uniform distribution of the cathode active powders over the 3D graphene aerogel structure. The electrochemical performance of the nNMC-811 and nNMC-811/GA cathodes was evaluated by the galvanostatic charge-discharge measurement between 2.5 V and 4.5 V at room temperature using a computer-controlled battery tester. In addition, variable speed capacity ratios (C-rate), electrochemical impedance spectroscopy (EIS) and cyclic voltammetry (CV) analyzes were also performed. nNMC-811/GA hybrid composite structure delivers a specific capacity of 183.15 mAhg(-1) at C/2 after the 500th cycle. It is understood from the FE-SEM images taken after the cycle that there is no deterioration in the structure. According to results, it was observed that the 3D porous structure of the nNMC-811/GA composite facilitated the mobility of Li+ ions, and the excellent electrochemical performances of the cathodes were improved due to the increasing defects as well as the electrical conductivity of GA.
引用
收藏
页数:16
相关论文
共 50 条
  • [21] Lithium Titanate Aerogel for Advanced Lithium-ion Batteries
    Maloney, Ryan P.
    Kim, Hyun Joong
    Sakamoto, Jeffrey S.
    ACS APPLIED MATERIALS & INTERFACES, 2012, 4 (05) : 2318 - 2321
  • [22] Graphene-based electrode materials for rechargeable lithium batteries
    Liang, Minghui
    Zhi, Linjie
    JOURNAL OF MATERIALS CHEMISTRY, 2009, 19 (33) : 5871 - 5878
  • [23] Compressible graphene aerogel supported CoO nanostructures as a binder-free electrode for high-performance lithium-ion batteries
    Dong, Yanfeng
    Liu, Shaohong
    Wang, Zhiyu
    Liu, Yang
    Zhao, Zongbin
    Qiu, Jieshan
    RSC ADVANCES, 2015, 5 (12): : 8929 - 8932
  • [24] Facile assembly and electrochemical properties of α-Fe2O3@graphene aerogel composites as electrode materials for lithium ion batteries
    Meng, Jing-Ke
    Zhao, Qing-Qing
    Ye, Wen-Hao
    Zheng, Guang-Ping
    Zheng, Xiu-Cheng
    Guan, Xin-Xin
    Liu, Yu-Shan
    Zhang, Jian-Min
    MATERIALS CHEMISTRY AND PHYSICS, 2016, 182 : 190 - 199
  • [25] Preparation and characterization of flexible lithium iron phosphate/graphene/cellulose electrode for lithium ion batteries
    Wang, Yan
    He, Zhen-yu
    Wang, Yao-xuan
    Fan, Cong
    Liu, Chen-ren-lang
    Peng, Qi-ling
    Chen, Jin-ju
    Peng, Zhe-sheng
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2018, 512 : 398 - 403
  • [26] Tailored lithium storage performance of graphene aerogel anodes with controlled surface defects for lithium-ion batteries
    Shan, Hui
    Xiong, Dongbin
    Li, Xifei
    Sun, Yipeng
    Yan, Bo
    Li, Dejun
    Lawes, Stephen
    Cui, Yanhua
    Sun, Xueliang
    APPLIED SURFACE SCIENCE, 2016, 364 : 651 - 659
  • [27] Investigation of CVD multilayered graphene as negative electrode for lithium-ion batteries
    Saulnier, Mathieu
    Trudeau, Charles
    Cloutier, Sylvain G.
    Schougaard, Steen B.
    ELECTROCHIMICA ACTA, 2017, 244 : 54 - 60
  • [28] Cobalt Oxide Nanocubes Encapsulated in Graphene Aerogel as Integrated Anodes for Lithium-Ion Batteries
    Shao, Jinxiao
    Xiao, Jinghao
    Wang, Yihan
    Zhou, Hu
    Yuan, Aihua
    CHEMISTRYSELECT, 2020, 5 (17): : 5323 - 5329
  • [29] Novel synthesis of tin oxide/graphene aerogel nanocomposites as anode materials for lithium ion batteries
    Wu, Zheyu
    Li, Xifei
    Tai, Limin
    Song, Haoze
    Zhang, Yiyan
    Yan, Bo
    Fan, Linlin
    Shan, Hui
    Li, Dejun
    JOURNAL OF ALLOYS AND COMPOUNDS, 2015, 646 : 1009 - 1014
  • [30] Preparation and electrochemical performance of silicon@graphene aerogel composites for lithium-ion batteries
    Tang, Fangqi
    Jiang, Tingting
    Tan, Yu
    Xu, Xinyi
    Zhou, Yingke
    JOURNAL OF ALLOYS AND COMPOUNDS, 2021, 854