Multihyperuniformity in high-entropy MXenes

被引:0
|
作者
Liu, Yu [1 ,2 ,3 ]
Chen, Mohan [1 ,2 ,3 ]
机构
[1] Peking Univ, Coll Engn, HEDPS, CAPT, Beijing 100871, Peoples R China
[2] Peking Univ, Sch Phys, Beijing 100871, Peoples R China
[3] AI Sci Inst, Beijing 100080, Peoples R China
基金
中国国家自然科学基金;
关键词
ANODE MATERIALS; HYPERUNIFORMITY; INTERFACE; EFFICIENT;
D O I
10.1063/5.0246719
中图分类号
O59 [应用物理学];
学科分类号
摘要
MXenes are a large family of two-dimensional transition metal carbides and nitrides that possess excellent electrical conductivity, high volumetric capacitance, great mechanical properties, and hydrophilicity. In this work, we generalize the concept of multihyperuniformity, an exotic state that can exist in a disordered multi-component system, to MXenes. Disordered hyperuniform systems possess an isotropic local structure that lacks traditional translational and orientational order, yet they completely suppress infinite-wavelength density fluctuations as in perfect crystals and, in this sense, possess a hidden long-range order. In particular, we evaluate the static structure factor of the individual components present in the high-entropy (HE) MXene experimental sample TiVCMoCr based on high-resolution scanning electron microscope imaging data, which suggests that this HE MXene system is at least effectively multihyperuniform (MH). We then devise a packing algorithm to generate MH models of HE MXene systems. The MH HE MXenes are predicted to be energetically more stable compared to the prevailing (quasi)random models of the HE MXenes due to the hidden long-range order. Moreover, the MH structure exhibits a distinctly smaller lattice distortion, which has a vital effect on the electronic properties of HE MXenes, such as the density of states and charge distribution. This systematic study of HE MXenes strengthens our fundamental understanding of these systems and suggests possible exotic physical properties, as endowed by the multihyperuniformity.
引用
收藏
页数:7
相关论文
共 50 条
  • [21] High-entropy alloys
    Canter, Neil
    TRIBOLOGY & LUBRICATION TECHNOLOGY, 2015, 71 (03) : 14 - 15
  • [22] High-entropy alloys
    George, Easo P.
    Raabe, Dierk
    Ritchie, Robert O.
    NATURE REVIEWS MATERIALS, 2019, 4 (08) : 515 - 534
  • [23] Preparing high-entropy ceramic films from high-entropy alloy substrate
    Li, Fei
    Cui, Wei
    Shao, Yang
    Zhang, Jie
    Du, Songmo
    Chen, Zhanglin
    Tian, Zhaobo
    Chen, Kexin
    Liu, Guanghua
    MATERIALS CHEMISTRY AND PHYSICS, 2022, 287
  • [24] High-entropy alumino-silicides: a novel class of high-entropy ceramics
    Wen, Tongqi
    Liu, Honghua
    Ye, Beilin
    Liu, Da
    Chu, Yanhui
    SCIENCE CHINA-MATERIALS, 2020, 63 (02) : 300 - 306
  • [25] Do "high-entropy alloys" have high entropy?
    Kucza, Witold
    JOURNAL OF MATERIALS RESEARCH, 2025,
  • [26] Formation mechanism of high-entropy spinel thin film and its mechanical and magnetic properties: Linking high-entropy alloy to high-entropy ceramic
    Minouei, Hossein
    Kheradmandfard, Mehdi
    Rizi, Mohsen Saboktakin
    Jalaly, Maisam
    Kim, Dae-Eun
    Hong, Sun Ig
    APPLIED SURFACE SCIENCE, 2022, 576
  • [27] High-entropy thermoelectric materials
    Tang, Qiqi
    Jiang, Binbin
    Wang, Keli
    Wang, Wu
    Jia, Baohai
    Ding, Tianpeng
    Huang, Zhenlong
    Lin, Yuan
    He, Jiaqing
    JOULE, 2024, 8 (06) : 1641 - 1666
  • [28] Polymorphism in a high-entropy alloy
    Fei Zhang
    Yuan Wu
    Hongbo Lou
    Zhidan Zeng
    Vitali B. Prakapenka
    Eran Greenberg
    Yang Ren
    Jinyuan Yan
    John S. Okasinski
    Xiongjun Liu
    Yong Liu
    Qiaoshi Zeng
    Zhaoping Lu
    Nature Communications, 8
  • [29] High-Entropy Materials in Focus
    Li, Yuyin
    Luo, Zhengtang
    Skrabalak, Sara E.
    Xiong, Yujie
    ACS MATERIALS LETTERS, 2024, 6 (07): : 2696 - 2697
  • [30] High-entropy ferroelectric materials
    Qi, He
    Chen, Liang
    Deng, Shiqing
    Chen, Jun
    NATURE REVIEWS MATERIALS, 2023, 8 (06) : 355 - 356