Electrochemical Characteristics of Li-Ion Battery Anodes Based on Titanium Oxyfluoride

被引:2
作者
Astrova, Ekaterina V. [1 ]
Parfeneva, Alesya V. [1 ]
Li, Galina V. [1 ]
Rumyantsev, Aleksander M. [1 ]
机构
[1] Russian Acad Sci, Ioffe Inst, Politekhnicheskaya 26, St Petersburg 194021, Russia
关键词
anodes; Coulomb efficiency; galvanostatic intermittent titration technique; Li+ diffusion coefficient; lithium-ion batteries; titanium oxyfluoride; METAL FLUORIDES; LITHIUM; INSERTION; TIOF2; IMPEDANCE; STORAGE;
D O I
10.1002/ente.202300588
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
The properties of titanium oxyfluoride-based anodes are studied by galvanostatic cycling and galvanostatic intermittent titration technique in a TiOF2-Li half-cells. This anode material is shown to have a high degradation resistance and a specific gravimetric capacity comparable to that of carbon and Li4Ti5O12. The chemical diffusion coefficient of Li+ in TiOF2 varies by two orders of magnitude in the range from 2.3 x 10(-13) to 2.5 x 10(-15) cm(2) s(-1) depending on the degree of lithiation and the direction of charge or discharge process. The electrode electrical resistance changes with cycling and its value is always lower in the lithiated state than in the delithiated state. The phenomenon of superreversibility inherent in this material has been studied. This phenomenon consists in the excess of the discharge capacity (Li extraction) over the charge capacity (Li insertion), that is, the Coulomb efficiency (CE) exceeds 100%. In the first few tens of cycles, the phenomenon is due to the extraction of excess lithium, which was previously stored in the electrode during the first cycle. On subsequent cycles, the CE stabilizes at a level above or below 100%, depending on the ratio between the charge and discharge currents, and is not related to the accumulation or spending of Li.
引用
收藏
页数:9
相关论文
共 20 条
[11]  
Levi M. D., 2012, CHARACTERIZATION MAT, V3, P913, DOI DOI 10.1002/0471266965.COM125
[12]   Li-storage via heterogeneous reaction in selected binary metal fluorides and oxides [J].
Li, H ;
Balaya, P ;
Maier, J .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2004, 151 (11) :A1878-A1885
[13]   Reversible formation and decomposition of LiF clusters using transition metal fluorides as precursors and their application in rechargeable Li batteries [J].
Li, H ;
Richter, G ;
Maier, J .
ADVANCED MATERIALS, 2003, 15 (09) :736-739
[14]   Fluorination of anatase TiO2 towards titanium oxyfluoride TiOF2: a novel synthesis approach and proof of the Li-insertion mechanism [J].
Louvain, N. ;
Karkar, Z. ;
El-Ghozzi, M. ;
Bonnet, P. ;
Guerin, K. ;
Willmann, P. .
JOURNAL OF MATERIALS CHEMISTRY A, 2014, 2 (37) :15308-15315
[15]   A new synthetic method of titanium oxyfluoride and its application as an anode material for rechargeable lithium batteries [J].
Myung, Seung-Taek ;
Kikuchi, Masaru ;
Yoon, Chong Seung ;
Yashiro, Hitoshi ;
Sun, Yang-Kook .
JOURNAL OF POWER SOURCES, 2015, 288 :376-383
[16]   Metal oxyfluorides TiOF2 and NbO2F as anodes for Li-ion batteries [J].
Reddy, M. V. ;
Madhavi, S. ;
Rao, G. V. Subba ;
Chowdari, B. V. R. .
JOURNAL OF POWER SOURCES, 2006, 162 (02) :1312-1321
[17]   Electrochemical impedance study of Li-ion insertion into mesocarbon microbead single particle electrode Part 1. Graphitized carbon [J].
Umeda, M ;
Dokko, K ;
Fujita, Y ;
Mohamedi, M ;
Uchida, I ;
Selman, JR .
ELECTROCHIMICA ACTA, 2001, 47 (06) :885-890
[18]   Hysteresis in electrochemical systems [J].
Van der Ven, Anton ;
See, Kimberly A. ;
Pilon, Laurent .
BATTERY ENERGY, 2022, 1 (02)
[19]   Nitrogen-Doped Carbon-Coated TiO2/TiF3 Heterostructure Nanoboxes with Enhanced Lithium and Sodium Storage Performance [J].
Xu, Hui ;
Wang, Weijuan ;
Yu, Genxi ;
Qin, Liguang ;
Jiang, Yaqin ;
Ren, Luohan ;
Chen, Jian .
ACS APPLIED ENERGY MATERIALS, 2020, 3 (05) :4738-4745
[20]   The Preparation of {001}TiO2/TiOF2 via a One-Step Hydrothermal Method and Its Degradation Mechanism of Ammonia Nitrogen [J].
Zhu, Jiaming ;
Liu, Zuohua ;
Yang, Feiyun ;
Long, Dingbiao ;
Jian, Yue ;
Pu, Shihua .
MATERIALS, 2022, 15 (18)