A Comprehensive Parametric Study for Solid-state Lithium-ion Battery Through Finite Element Simulation

被引:4
|
作者
Ansah, Solomon [1 ]
Shin, Namsoo [2 ]
Lee, Jong-Sook [3 ]
Cho, Hoon-Hwe [1 ]
机构
[1] Hanbat Natl Univ, Dept Mat Sci & Engn, 125 Dongseodae Ro, Daejeon, South Korea
[2] Deep Solut Inc, 17 Jukjeon Ro, Yonginsi 16897, Gyeonggido, South Korea
[3] Chonnam Natl Univ, Sch Mat Sci & Engn, 77 Yongbong Ro, Gwangju, South Korea
基金
新加坡国家研究基金会;
关键词
Solid-state batteries; Modeling; Electrode thickness; Solid electrolyte thickness; Diffusivity; ELECTROLYTE; PERFORMANCE; FABRICATION; INTERFACE; STRAINS; CATHODE; LICOO2; MODEL;
D O I
10.1007/s13391-021-00305-9
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Solid-state lithium-ion batteries (SSB) have been regarded over recent years as a promising candidate for next-generation energy storage due to their increased energy density and safety compared to conventional lithium-ion batteries. However, some internal and design parameter effects are yet to be fully comprehended. Since numerical modeling gives the opportunity to explore easily the various parameters and their effect on the performance of the cell, herein, we present a numerical model to study some parameters to optimize the performance of the SSB. The model considers diffusion of lithium-ion in both the electrode and electrolyte and electrochemical reactions within the SSB. The model prediction agrees with some experimental discharge profiles, which therefore validates the model. The model is then used to understand the role of the electrode and electrolyte thickness and maximum concentration of lithium in the solid phase on the performance of the cell. It was observed that increasing cathode thickness increases the cell capacity, whereas reducing electrolyte thickness improves the capacity of the cell. Moreover, a direct proportionality is established between the maximum concentration of lithium and the call capacity. Additionally, the role of transport parameter, diffusivity, on the capacity of the SSB at different discharging rates is also studied. The understanding garnered from the study will improve the cell electrode design tailored to the desired applications of the SSB. This work summarizes the relationship between some design parameters and the performance of a solid-state battery through modeling approach.
引用
收藏
页码:532 / 542
页数:11
相关论文
共 50 条
  • [1] A Comprehensive Parametric Study for Solid-state Lithium-ion Battery Through Finite Element Simulation
    Solomon Ansah
    Namsoo Shin
    Jong-Sook Lee
    Hoon-Hwe Cho
    Electronic Materials Letters, 2021, 17 : 532 - 542
  • [2] A Solid-State Lithium-Ion Battery: Structure, Technology, and Characteristics
    Rudyi, A. S.
    Mironenko, A. A.
    Naumov, V. V.
    Skundin, A. M.
    Kulova, T. L.
    Fedorov, I. S.
    Vasil'ev, S. V.
    TECHNICAL PHYSICS LETTERS, 2020, 46 (03) : 215 - 219
  • [3] A Solid-State Lithium-Ion Battery: Structure, Technology, and Characteristics
    A. S. Rudyi
    A. A. Mironenko
    V. V. Naumov
    A. M. Skundin
    T. L. Kulova
    I. S. Fedorov
    S. V. Vasil’ev
    Technical Physics Letters, 2020, 46 : 215 - 219
  • [4] Battery Safety: From Lithium-Ion to Solid-State Batteries
    Yu, Xiqian
    Chen, Rusong
    Gan, Luyu
    Li, Hong
    Chen, Liquan
    ENGINEERING, 2022, 21 : 9 - 14
  • [5] Progress in solid-state high voltage lithium-ion battery electrolytes
    Ahniyaz, Anwar
    de Meatza, Iratxe
    Kvasha, Andriy
    Garcia-Calvo, Oihane
    Ahmed, Istaq
    Sgroi, Mauro Francesco
    Giuliano, Mattia
    Dotoli, Matteo
    Dumitrescu, Mihaela-Aneta
    Jahn, Marcus
    Zhang, Ningxin
    ADVANCES IN APPLIED ENERGY, 2021, 4
  • [6] Solid-State Reaction Heterogeneity During Calcination of Lithium-Ion Battery Cathode
    Jo, Sugeun
    Han, Jeongwoo
    Seo, Sungjae
    Kwon, Oh-Sung
    Choi, Subin
    Zhang, Jin
    Hyun, Hyejeong
    Oh, Juhyun
    Kim, Juwon
    Chung, Jinkyu
    Kim, Hwiho
    Wang, Jian
    Bae, Junho
    Moon, Junyeob
    Park, Yoon-Cheol
    Hong, Moon-Hi
    Kim, Miyoung
    Liu, Yijin
    Sohn, Il
    Jung, Keeyoung
    Lim, Jongwoo
    ADVANCED MATERIALS, 2023, 35 (10)
  • [7] Fully Integrated Design of a Stretchable Solid-State Lithium-Ion Full Battery
    Chen, Xi
    Huang, Haijian
    Pan, Long
    Liu, Tian
    Niederberger, Markus
    ADVANCED MATERIALS, 2019, 31 (43)
  • [8] Building a Better All-Solid-State Lithium-Ion Battery with Halide Solid-State Electrolyte
    Li, Chao
    Du, Yaping
    ACS NANO, 2025, 19 (04) : 4121 - 4155
  • [9] Modeling and simulation of 2D lithium-ion solid state battery
    Bates, Alex
    Mukherjee, Santanu
    Schuppert, Nicholas
    Son, Byungrak
    Kim, Joo Gon
    Park, Sam
    INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2015, 39 (11) : 1505 - 1518
  • [10] Ionic conductivity and ion transport mechanisms of solid-state lithium-ion battery electrolytes: A review
    Yang, Hui
    Wu, Nianqiang
    ENERGY SCIENCE & ENGINEERING, 2022, 10 (05) : 1643 - 1671