Diffusion kinetics of water in graphite anodes for Li-ion batteries

被引:12
作者
Eser, Jochen C. [1 ]
Deichmann, Birthe [1 ]
Wirsching, Tobias [1 ]
Merklein, Lisa [1 ]
Mueller, Marcus [2 ]
Scharfer, Philip [1 ]
Schabel, Wilhelm [1 ]
机构
[1] Karlsruhe Inst Technol, Inst Thermal Proc Engn, Kaiserstr 12, D-76131 Karlsruhe, Germany
[2] Karlsruhe Inst Technol, Inst Appl Mat Energy Storage Syst, Eggenstein Leopoldshafen, Germany
关键词
Drying; diffusion kinetics; Li-ion battery; moisture; water;
D O I
10.1080/07373937.2020.1852568
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Since the loading of electrodes for Li-ion batteries with an excessive amount of moisture affects the performance of the cells, the moisture is partly removed in a post-drying process step. The drying time is thereby controlled by the amount of moisture that has to be removed as well as the mass transport kinetics of water. This mass transport kinetics is limited by various mass transport resistances, which in turn can be influenced by individual dryer settings. In this paper, we investigate water-based anodes for Li-ion batteries as well as selected materials, and distinguish between different possible mass transport resistances that affect the drying time. Determined diffusion coefficients can be used in future modeling of the post-drying process. Special consideration needs to be bestowed upon the mass transport of water in the polymeric binders, since earlier investigations revealed that the moisture uptake of the anodes is particularly caused by sodium carboxymethyl cellulose (Na-CMC). This high water uptake by the binder in water-based electrodes leads to a polymer film drying process within the porous structure of the electrode. The diffusion of water in layers of binder is particularly dependent on the concentration as well as the temperature of the binder.
引用
收藏
页码:1130 / 1145
页数:16
相关论文
共 50 条
[31]   Operando NMR characterization of cycled and calendar aged nanoparticulate silicon anodes for Li-ion batteries [J].
Wang, Evelyna ;
Rodrigues, Marco-Tulio F. ;
Park, Sohyun ;
Dogan, Fulya ;
Key, Baris .
JOURNAL OF POWER SOURCES, 2024, 604
[32]   Enabling Li2O as an Effective Lithium Ion Source Material for In Situ Prelithiation of SiOx Anodes in Li-Ion Batteries [J].
Zhang, Sheng S. .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2025, 172 (05)
[33]   Synthesis and characterization of electrochemically active graphite-silicon-tin composite anodes for Li-ion applications [J].
Rock, Nicolaus L. ;
Kumta, Prashant N. .
JOURNAL OF POWER SOURCES, 2007, 164 (02) :829-838
[34]   Distinct Dynamics of Lithium Intercalation and Plating on Graphite Anode for Li-Ion Batteries in eVTOL Applications [J].
Rahman, Muhammad Mominur ;
Dixit, Marm ;
Amin, Ruhul ;
Abouimrane, Ali ;
Kweon, Chol-Bum M. ;
Belharouak, Ilias .
ADVANCED ENERGY MATERIALS, 2025,
[35]   Operando space-resolved inhomogeneity in lithium diffusion across NMC and graphite electrodes in cylinder-type Li-ion batteries [J].
Graae, Kristoffer Visti ;
Li, Xinyu ;
Etter, Martin ;
Schoekel, Alexander ;
Norby, Poul .
JOURNAL OF ENERGY STORAGE, 2023, 74
[36]   Study of square-wave AC electrophoretic deposition of lithium titanate anodes for Li-ion batteries [J].
Cohen, Elazar ;
Stark, David ;
Kondrova-Guchok, Olga ;
Shekhter, Pini ;
Golodnitsky, Diana .
ELECTROCHIMICA ACTA, 2025, 512
[37]   The Puzzles in Fast Charging of Li-Ion Batteries [J].
Sheng Shui Zhang .
Energy & Environmental Materials, 2022, 5 (04) :1005-1007
[38]   High Frequency Impedance of Li-ion Batteries [J].
Doersam, T. ;
Schoerle, S. ;
Spieker, C. ;
Waldmann, T. ;
Hoene, E. ;
Lang, K-D. .
2015 IEEE INTERNATIONAL SYMPOSIUM ON ELECTROMAGNETIC COMPATIBILITY (EMC), 2015, :714-719
[39]   Adaptive Pulse Charger For Li-Ion Batteries [J].
Niroshana, Isuru S. M. ;
Sirisukprasert, Siriroj .
2017 8TH INTERNATIONAL CONFERENCE OF INFORMATION AND COMMUNICATION TECHNOLOGY FOR EMBEDDED SYSTEMS (IC-ICTES), 2017,
[40]   Simulation of Electrochemical Heating in Li-Ion Batteries [J].
Dusikova, Dominika ;
Zemen, Jan .
2024 47TH INTERNATIONAL SPRING SEMINAR ON ELECTRONICS TECHNOLOGY, ISSE 2024, 2024,