A comprehensive diffusion-induced stress coupled multiscale modeling and analysis in hard-carbon electrodes of Li-ion batteries

被引:10
作者
Kumar, P. Pavan [1 ]
Agrawal, Asutosh [1 ,2 ]
Nayak, Debasis [1 ,2 ]
Biswas, Koushik [1 ]
Ghosh, Sudipto [1 ]
Kundu, Tarun Kumar [1 ]
机构
[1] Indian Inst Technol, Dept Met & Mat Engn, Kharagpur 721302, W Bengal, India
[2] MiVa Energy Pvt Ltd, Puri 572001, Odisha, India
关键词
NEGATIVE ELECTRODE; ELASTIC PROPERTIES; LITHIUM INSERTION; ANODE MATERIALS; AB-INITIO; DYNAMICS; SILICON; INTERCALATION; DEFORMATION; SIMULATION;
D O I
10.1039/d3cp01967e
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Particle fracture due to diffusion-induced stress (DIS) in electrodes is a key factor for lithium-ion battery (LIB) failure. Among many ways to minimize DIS, optimization of particle size and C-rates using state of charge (SOC) dependent varying properties can be a noble approach. Herein, a comprehensive multiscale modeling approach has been proposed to optimize the particle size by studying the DIS in hard carbon (HC) particles as the potential anode materials for high-energy LIBs. To accomplish this, density functional theory (DFT) was used to calculate the SOC dependent coefficient of volume expansion (CVE). Similarly, SOC dependent diffusivity and elastic modulus are calculated via molecular dynamics (MD) simulations. These results are transferred to a continuum model to examine the evolution of concentrations and DISs in hard carbon particles of radius 100-1000 nm lithiated at various C-rates (1C, 2C, 5C, and 10C). Our model successfully incorporates the variation of Li+ diffusivity and elastic modulus with SOC and tracks stress relaxation and volume expansion in the particles during lithiation. An optimized particle size has been recommended for hard carbon, considering both stresses for different C-rates. Our study provides a more realistic multiscale modeling framework for optimizing the DIS and can act as a guiding method towards achieving an optimum particle size so that capacity fading due to cracking can be avoided.
引用
收藏
页码:20462 / 20472
页数:12
相关论文
共 71 条
[1]   Understanding the improved electrochemical performance of nitrogen-doped hard carbons as an anode for sodium ion battery [J].
Agrawal, Ashutosh ;
Janakiraman, S. ;
Biswas, Koushik ;
Venimadhav, A. ;
Srivastava, S. K. ;
Ghosh, Sudipto .
ELECTROCHIMICA ACTA, 2019, 317 :164-172
[2]   Effect of N-doping on hard carbon nano-balls as anode for Li-ion battery: improved hydrothermal synthesis and volume expansion study [J].
Agrawal, Ashutosh ;
Biswas, K. ;
Srivastava, S. K. ;
Ghosh, Sudipto .
JOURNAL OF SOLID STATE ELECTROCHEMISTRY, 2018, 22 (11) :3443-3455
[3]   Critical review of state of health estimation methods of Li-ion batteries for real applications [J].
Berecibar, M. ;
Gandiaga, I. ;
Villarreal, I. ;
Omar, N. ;
Van Mierlo, J. ;
Van den Bossche, P. .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2016, 56 :572-587
[4]   PROJECTOR AUGMENTED-WAVE METHOD [J].
BLOCHL, PE .
PHYSICAL REVIEW B, 1994, 50 (24) :17953-17979
[5]   Influence of Li Concentration-Dependent Diffusion Coefficient and Modulus Hardening on Diffusion-Induced Stresses in Anisotropic Anode Particles [J].
Cai, Xianzhong ;
Guo, Zhansheng .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2021, 168 (01)
[6]   Combining mechanical and chemical effects in the deformation and failure of a cylindrical electrode particle in a Li-ion battery [J].
Chakraborty, Jeevanjyoti ;
Please, Colin P. ;
Goriely, Alain ;
Chapman, S. Jonathan .
INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2015, 54 :66-81
[7]   Stress-diffusion coupled multiscale analysis of Si anode for Li-ion battery [J].
Chang, Seongmin ;
Moon, Janghyuk ;
Cho, Maenghyo .
JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY, 2015, 29 (11) :4807-4816
[8]   Multiscale analysis of prelithiated silicon nanowire for Li-ion battery [J].
Chang, Seongmin ;
Moon, Janghyuk ;
Cho, Kyeongjae ;
Cho, Maenghyo .
COMPUTATIONAL MATERIALS SCIENCE, 2015, 98 :99-104
[9]   Li metal deposition and stripping in a solid-state battery via Coble creep [J].
Chen, Yuming ;
Wang, Ziqiang ;
Li, Xiaoyan ;
Yao, Xiahui ;
Wang, Chao ;
Li, Yutao ;
Xue, Weijiang ;
Yu, Daiwei ;
Kim, So Yeon ;
Yang, Fei ;
Kushima, Akihiro ;
Zhang, Guoge ;
Huang, Haitao ;
Wu, Nan ;
Mai, Yiu-Wing ;
Goodenough, John B. ;
Li, Ju .
NATURE, 2020, 578 (7794) :251-+
[10]   In Situ Stress Measurement Techniques on Li-ion Battery Electrodes: A Review [J].
Cheng, Ximing ;
Pecht, Michael .
ENERGIES, 2017, 10 (05)