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    High-throughput screening assisted discovery of a stable two-dimensional cobalt structure

    Zixuan Xie1,2, Baoxing Zhai2,*, Wanru Nie1,2, Heng Zhang2, Zhuo Xu2, Qian Chen2, Ruiqing Cheng3,†, and Jun He1,2,3,‡

    • *Contact author: zhaibx@hnas.ac.cn
    • †Contact author: chengrq@whu.edu.cn
    • ‡Contact author: he-jun@whu.edu.cn

    Phys. Rev. Materials 10, 044002 – Published 9 April, 2026

    DOI: https://doi.org/10.1103/sj53-qws1

    Abstract

    The search for room-temperature ferromagnetic two-dimensional materials is crucial for the development of future functional spintronic devices. In this study, combining a global minimum search method of the free energy surfaces by the CALYPSO software, we have predicted a two-dimensional cobalt structure. First-principles calculations demonstrate that the structure is a stable ferromagnetic metal exhibiting in-plane magnetic anisotropy, with an estimated Curie temperature of 1001 K significantly exceeding room temperature. Furthermore, the structure shows remarkable resistance to external strain, maintaining its ferromagnetic ground state and excellent stability under biaxial strains ranging from −4% to 5%. These findings indicate that the structure holds promising application prospects in spintronic devices.

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