A first-principle study on the two dimensional Janus MXene TaFeC with spin gapless behaviour

IF 3.2 3区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR Journal of Solid State Chemistry Pub Date : 2024-10-28 DOI:10.1016/j.jssc.2024.125072
Qiang Gao , Tiying Liu , Xin Jin , Guimei Shi , Chen Shen
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Abstract

Based on density functional theory calculations, we have investigated the two-dimensional Janus MXene TaFeC, focusing particularly on the magnetic and electronic properties. It is found TaFeC is dynamically, mechanically, and thermodynamically stable. With both sizable Curie temperature and enhanced out-off plane magneto-crystalline anisotropy energy, the Janus MXene TaFeC has the potential to be applied at finite temperature. The mechanism behind the magneto-crystalline anisotropy energy and magnetism are explained based on perturbation theory and crystal field splitting, respectively. Under biaxial strain, the ferromagnetic order is robust stable. With a various of effective potential on Fe, the electronic structure evolution is studied, where the effective potential of 1.3 eV is a special case. In such case, the Janus MXene TaFeC can be classified as a new type of spin-gapless semiconductor beyond the previous classifications, behaving topological nontrivial edge states.
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关于具有无自旋间隙特性的二维简纳斯 MXene TaFeC 的第一性原理研究
基于密度泛函理论计算,我们研究了二维 Janus MXene TaFeC,尤其侧重于其磁性和电子特性。研究发现,TaFeC 具有动态、机械和热力学稳定性。由于具有可观的居里温度和增强的离平面磁晶各向异性能,Janus MXene TaFeC 具有在有限温度下应用的潜力。磁晶各向异性能和磁性背后的机理分别基于摄动理论和晶场分裂得到了解释。在双轴应变下,铁磁阶是稳健稳定的。研究了铁上各种有效电势的电子结构演化,其中 1.3 eV 的有效电势是一个特例。在这种情况下,Janus MXene TaFeC 可被归类为一种新型无自旋间隙半导体,超越了以往的分类,表现出拓扑非三维边缘态。
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来源期刊
Journal of Solid State Chemistry
Journal of Solid State Chemistry 化学-无机化学与核化学
CiteScore
6.00
自引率
9.10%
发文量
848
审稿时长
25 days
期刊介绍: Covering major developments in the field of solid state chemistry and related areas such as ceramics and amorphous materials, the Journal of Solid State Chemistry features studies of chemical, structural, thermodynamic, electronic, magnetic, and optical properties and processes in solids.
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