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
  • [21] Study on the estimation of the state of charge of lithium-ion battery
    Yuan, Baohe
    Zhang, Binger
    Yuan, Xiang
    An, Zheng
    Chen, Guoxi
    Chen, Lulu
    Luo, Shijun
    ELECTROCHIMICA ACTA, 2024, 491
  • [22] Emerging applications of spark plasma sintering in all solid-state lithium-ion batteries and beyond
    Zhu, Hongzheng
    Liu, Jian
    JOURNAL OF POWER SOURCES, 2018, 391 : 10 - 25
  • [23] Current Insight into 3D Printing in Solid-State Lithium-Ion Batteries: A Perspective
    Ponnada, Srikanth
    Gorle, Demudu Babu
    Bose, Rapaka S. Chandra
    Kiai, Maryam Sadat
    Devi, Meghali
    Raju, Chikkili Venkateswara
    Baydogan, Nilgun
    Nanda, Karuna Kar
    Marken, Frank
    Sharma, Rakesh K.
    BATTERIES & SUPERCAPS, 2022, 5 (08)
  • [24] Solid-State Transport of Lithium in Lithium-Ion-Battery Positive Electrodes
    Bernardi, Dawn M.
    Chandrasekaran, Rajeswari
    Go, Joo Young
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2013, 160 (09) : A1430 - A1441
  • [25] Solid-State Thermal Management for Lithium-Ion EV Batteries
    Alaoui, Chakib
    IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2013, 62 (01) : 98 - 107
  • [26] Are solid-state batteries safer than lithium-ion batteries?
    Bates, Alex M.
    Preger, Yuliya
    Torres-Castro, Loraine
    Harrison, Katharine L.
    Harris, Stephen J.
    Hewson, John
    JOULE, 2022, 6 (04) : 742 - 755
  • [27] Flexible Solid-State Lithium-Ion Batteries: Materials and Structures
    Deng, Ru
    He, Tian
    ENERGIES, 2023, 16 (12)
  • [28] Review on composite polymer electrolyte using PVDF-HFP for solid-state lithium-ion battery
    Halder, Bhargabi
    Mohamed, Mohamed Gamal
    Kuo, Shiao-Wei
    Elumalai, Perumal
    MATERIALS TODAY CHEMISTRY, 2024, 36
  • [29] High-Performance Solid-State Lithium-Ion Battery with Mixed 2D and 3D Electrodes
    Ashby, David S.
    Choi, Christopher S.
    Edwards, Martin A.
    Talin, A. Alec
    White, Henry S.
    Dunn, Bruce S.
    ACS APPLIED ENERGY MATERIALS, 2020, 3 (09) : 8402 - 8409
  • [30] Design and study of semi-solid-state lithium-ion battery based on LATP electrolyte
    Wu, Jun
    Shi, Liurong
    Li, Jin
    Xu, Jiachen
    Feng, Tao
    Guo, Wei
    JOURNAL OF ENERGY STORAGE, 2025, 120