Toward Rigorous Validation of Li-S Battery Models

被引:5
|
作者
Cornish, M. [1 ]
Marinescu, M. [1 ]
机构
[1] Imperial Coll London, Dept Mech Engn, London SW7 2AZ, England
基金
英国工程与自然科学研究理事会;
关键词
LITHIUM-SULFUR BATTERIES; POLYSULFIDE SHUTTLE; MATHEMATICAL-MODEL; CATHODE DESIGN; PRECIPITATION; CAPACITY; PERFORMANCE; LIQUID; IMPACT; CELLS;
D O I
10.1149/1945-7111/ac7750
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Achieving Li-S batteries' promise of significantly higher gravimetric energy density and lower cost than Li-ion batteries requires researchers to delineate the most important factors affecting the performance of this technology. By encoding this knowledge into a mathematical model, understanding is made precise, quantitative, and predictive. However, the complex and unknown mechanisms of Li-S batteries have multiple proposed models with relatively few informative quantitative comparisons to experimental data. Without further testing, many proposed models do not have enough evidence to claim predictive power. The conclusions drawn from these models regarding the internal dynamics of Li-S cells may be correct, but the lack of evidence provided leaves these conclusions uncertain. Consequently, a minimum set of testing procedures for model validation is proposed. Moreover, in the absence of an accepted standard model, a novel zero dimensional model is proposed in this work. The model improves upon several existing models while remaining as simple as possible. The model is quantitatively predictive, as demonstrated by out-of-sample predictions of experimental discharge resistance. Finally, this model and others have been implemented using PyBaMM. Therefore, the open access code allows rapid modifications of this model by all researchers.
引用
收藏
页数:15
相关论文
共 50 条
  • [11] Oxis raises funds for Li-S battery cells
    Bomgardner, Melody
    CHEMICAL & ENGINEERING NEWS, 2019, 97 (04) : 14 - 14
  • [12] Perspectives on manufacturing simulations of Li-S battery cathodes
    Arcelus, Oier
    Franco, Alejandro A.
    JOURNAL OF PHYSICS-ENERGY, 2022, 4 (01):
  • [13] Bifunctional interlayer for capturing polysulfide in Li-S battery
    Li, Pengyu
    Deng, Jianna
    Li, Jing
    Guo, Jianqiang
    Zeng, Min
    Wang, Lige
    Wang, Rui
    Tang, Manqin
    JOURNAL OF MATERIALS SCIENCE, 2019, 54 (18) : 11983 - 11990
  • [14] Isotope effects in a Li-S battery: a new concept
    Li, Xue-Ting
    Zhu, Yu-Hui
    Tan, Shuang-Jie
    Xin, Sen
    BATTERIES & SUPERCAPS, 2024, 7 (04)
  • [15] Benzoselenol as an organic electrolyte additive in Li-S battery
    Junpeng Sun
    Kai Zhang
    Yongzhu Fu
    Wei Guo
    Nano Research, 2023, 16 : 3814 - 3822
  • [16] An efficient macroporous catalytic cathode for Li-S battery
    孙创超
    陈立新
    范修林
    材料导报, 2021, 35 (01) : 1001 - 1002
  • [17] Interaction of CuS and Sulfur in Li-S Battery System
    Sun, Ke
    Su, Dong
    Zhang, Qing
    Bock, David C.
    Marschilok, Amy C.
    Takeuchi, Kenneth J.
    Takeuchi, Esther S.
    Gan, Hong
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2015, 162 (14) : A2834 - A2839
  • [18] Is the Li-S battery an everlasting challenge for operando techniques?
    Conder, J.
    Villevieille, C.
    CURRENT OPINION IN ELECTROCHEMISTRY, 2018, 9 : 33 - 40
  • [19] Toward Sustainable Li-S Battery Using Scalable Cathode and Safe Glyme-Based Electrolyte
    Marangon, Vittorio
    Barcaro, Edoardo
    Scaduti, Eugenio
    Adami, Filippo
    Bonaccorso, Francesco
    Pellegrini, Vittorio
    Hassoun, Jusef
    ACS APPLIED ENERGY MATERIALS, 2023, 6 (22) : 11560 - 11572
  • [20] Recent materials development for Li-ion and Li-S battery separators
    He, Jiajun
    Li, Xiaodong
    JOURNAL OF ENERGY STORAGE, 2025, 112