Entropy-Stabilized Multication Fluorides as a Conversion-Type Cathode for Li-Ion Batteries-Impact of Element Selection

被引:1
|
作者
Park, Jehee [1 ]
Yang, Yingjie [2 ]
Park, Haesun [3 ]
Sundar, Aditya [4 ]
Lee, Sungsik [5 ]
Kinnibrugh, Tiffany L. [5 ]
Son, Seoung-bum [1 ]
Lee, Eungje [1 ]
Zapol, Peter [4 ]
Klie, Robert F. [2 ]
Kim, Jae Jin [1 ]
机构
[1] Argonne Natl Lab, Chem Sci & Engn Div, Lemont, IL 60439 USA
[2] Univ Illinois, Dept Phys, Chicago, IL 60607 USA
[3] Chung Ang Univ, Sch Integrat Engn, Seoul 06974, South Korea
[4] Argonne Natl Lab, Mat Sci Div, Lemont, IL 60439 USA
[5] Argonne Natl Lab, Xray Sci Div, Lemont, IL 60439 USA
基金
美国国家科学基金会;
关键词
high entropy materials; metal fluoride; conversion; cathode; Li-ionbatteries;
D O I
10.1021/acsami.4c12920
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Metal fluorides (e.g., FeF2 and FeF3) have received attention as conversion-type cathode materials for Li-ion batteries due to their higher theoretical capacity compared to that of common intercalation materials. However, their practical use has been hindered by low round-trip efficiency, voltage hysteresis, and capacity fading. Cation substitution has been proposed to address these challenges, and recent advancements in battery performance involve the introduction of entropy stabilization in an attempt to facilitate reversible conversion reactions by increasing configurational entropy. Building on this concept, high entropy fluorides with five cations were synthesized by using a simple mechanochemical route. In order to examine the impact of element selection, Co0.2Cu0.2Ni0.2Zn0.2Fe0.2F2 (HEF-Fe) was compared with Co0.2Cu0.2Ni0.2Zn0.2Mg0.2F2 (HEF-Mg), replacing electrochemically inactive Mg with Fe as an active participant in the conversion reaction. Combining electrochemical measurements with first-principles calculations, high-resolution electron microscopy, and synchrotron X-ray analysis, HEFs' battery performances and conversion reaction mechanisms were investigated in detail. The results highlighted that replacement of Mg with Fe was beneficial, with enhanced capacity, rate capability, and surface stability. In addition, it was found that HEF-Fe showed similar cycle stability without an electrochemically inactive element. These findings provide valuable insights for the design of high entropy multielement fluorides for improved Li-ion battery performance.
引用
收藏
页码:57151 / 57161
页数:11
相关论文
共 50 条
  • [1] Thermal characteristics of conversion-type FeOF cathode in li-ion batteries
    Zhao L.
    Kitajou A.
    Okada S.
    Okada, Shigeto (s-okada@cm.kyushu-u.ac.jp), 1600, MDPI (03):
  • [2] Recent Advancements in the Conversion-Type Pnictide-Based Electrodes for Li-Ion Batteries
    Monconduit, L.
    JOURNAL OF PHYSICAL CHEMISTRY C, 2014, 118 (20): : 10531 - 10544
  • [3] Converting intercalation-type cathode in spent lithium-ion batteries into conversion-type cathode
    Zhu, Dingding
    Su, Yong
    Chen, Jingzhao
    Ou, Xiangze
    Zhang, Xuedong
    Xie, Wen
    Zhou, Yuyan
    Guo, Yunna
    Dai, Qiushi
    Jia, Peng
    Yan, Jitong
    Geng, Lin
    Guo, Baiyu
    Zhang, Liqiang
    Tang, Yongfu
    Huang, Qiao
    Huang, Jianyu
    NANO RESEARCH, 2024, 17 (05) : 4602 - 4609
  • [4] Converting intercalation-type cathode in spent lithium-ion batteries into conversion-type cathode
    Dingding Zhu
    Yong Su
    Jingzhao Chen
    Xiangze Ou
    Xuedong Zhang
    Wen Xie
    Yuyan Zhou
    Yunna Guo
    Qiushi Dai
    Peng Jia
    Jitong Yan
    Lin Geng
    Baiyu Guo
    Liqiang Zhang
    Yongfu Tang
    Qiao Huang
    Jianyu Huang
    Nano Research, 2024, 17 : 4602 - 4609
  • [5] Thermal synthesis of conversion-type bismuth fluoride cathodes for high-energy-density Li-ion batteries
    Julian F. Baumgärtner
    Frank Krumeich
    Michael Wörle
    Kostiantyn V. Kravchyk
    Maksym V. Kovalenko
    Communications Chemistry, 5
  • [6] Thermal synthesis of conversion-type bismuth fluoride cathodes for high-energy-density Li-ion batteries
    Baumgartner, Julian F.
    Krumeich, Frank
    Worle, Michael
    Kravchyk, Kostiantyn, V
    Kovalenko, Maksym, V
    COMMUNICATIONS CHEMISTRY, 2022, 5 (01)
  • [7] A high-energy conversion-type cathode activated by amorpholization for Li rechargeable batteries
    Lee, Yongseok
    Kang, Jungmin
    Ahn, Jinho
    Ko, Wonseok
    Park, Hyunyoung
    Lee, Seokjin
    Lee, Sangyeop
    Yoo, Jung-Keun
    Kim, Jongsoon
    JOURNAL OF MATERIALS CHEMISTRY A, 2022, 10 (37) : 20080 - 20089
  • [8] Impact of Crystallography on Design of Cathode Materials for Li-ion Batteries
    Antipov, E.
    Khasanova, N.
    ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2014, 70 : C20 - C20
  • [9] Polyanion-Type Cathode Materials for Li-Ion Batteries
    Wang Fuqing
    Chen Jian
    Zhang Feng
    Yi Baolian
    PROGRESS IN CHEMISTRY, 2012, 24 (08) : 1456 - 1465
  • [10] Macroporous Mn3O4 microspheres as a conversion-type anode material morphology for Li-ion batteries
    Kozawa, Takahiro
    Nishikawa, Kei
    JOURNAL OF SOLID STATE ELECTROCHEMISTRY, 2020, 24 (06) : 1283 - 1290