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探索WXBC(X = W、Mn、Fe)单层中的室温铁磁性。

Exploring room-temperature ferromagnetism in WXBC (X = W, Mn, Fe) monolayers.

作者信息

Abdullahi Yusuf Zuntu, Ahmad Sohail, Ersan Fatih

机构信息

Department of Physics, Faculty of Science, Kaduna State University P.M.B. 2339 Kaduna State Nigeria

Department of Physics, College of Science, King Khalid University P O Box 9004 Abha Saudi Arabia.

出版信息

RSC Adv. 2022 Oct 5;12(44):28433-28440. doi: 10.1039/d2ra04488a. eCollection 2022 Oct 4.

Abstract

Two-dimensional (2D) transition metal boron-carbide is a novel material that has unique properties suitable for advanced spintronics and storage applications. Through first-principles calculations based on density functional theory (DFT) calculations, we report a new class of stable 2D ceramic WXBC (X = W, Mn, Fe) monolayers. We find that all WXBC monolayers prefer a ferromagnetic ground state with metallic electronic property. DFT calculations proved that WXBC monolayers exhibit good energetic, mechanical, and dynamic stabilities. More importantly, these monolayers exhibit large magnetic anisotropy energy (MAE) of 1213 μeV, 247 μeV and 20 μeV per magnetic atom for WBC, WMnBC, and WFeBC, respectively. An out-of-plane easy axis (EA) magnetization direction is found for WBC whereas the EA for WMnBC and WFeBC are in-plane. By performing Monte Carlo (MC) simulations based on the 2D Heisenberg model, we predict Curie temperatures ( ) of 155 K for the WBC monolayer. The Berezinskii-Kosterlitz-Thouless transition (BKT) temperature values of WMnBC and WFeBC are as high as 374.69 K and 417.39 K. For further investigations, the adsorption properties of Li, Na, and K atoms on WXBC (atm-WXBC) systems are examined. It is revealed that the initial ferromagnetic metallic properties of bare WXBC monolayers are maintained for all atm-WXBC systems. The obtained strong chemisorption energies are high enough to make adsorbed Li, Na, and K immobile on WXBC surfaces. All these findings demonstrate the unique potential of WXBC monolayers as multifunctional candidates for advanced magnetic device and storage applications.

摘要

二维(2D)过渡金属硼化物是一种新型材料,具有适用于先进自旋电子学和存储应用的独特性能。通过基于密度泛函理论(DFT)计算的第一性原理计算,我们报道了一类新型稳定的二维陶瓷WXBC(X = W、Mn、Fe)单层。我们发现所有WXBC单层都倾向于具有金属电子性质的铁磁基态。DFT计算证明WXBC单层具有良好的能量、力学和动力学稳定性。更重要的是,这些单层对于WBC、WMnBC和WFeBC,每个磁性原子分别表现出1213 μeV、247 μeV和20 μeV的大磁各向异性能量(MAE)。发现WBC的易磁化轴(EA)磁化方向垂直于平面,而WMnBC和WFeBC的EA在平面内。通过基于二维海森堡模型进行蒙特卡罗(MC)模拟,我们预测WBC单层的居里温度( )为155 K。WMnBC和WFeBC的 Berezinskii-Kosterlitz-Thouless转变(BKT)温度值高达374.69 K和417.39 K。为了进一步研究,研究了Li、Na和K原子在WXBC(atm-WXBC)系统上的吸附特性。结果表明,所有atm-WXBC系统都保持了裸WXBC单层最初的铁磁金属性质。所获得的强化学吸附能足以使吸附在WXBC表面的Li、Na和K固定不动。所有这些发现都证明了WXBC单层作为先进磁性器件和存储应用的多功能候选材料具有独特的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a704/9533317/d2573165890c/d2ra04488a-f1.jpg

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