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MnX(X = P、As)单层:一种新型二维本征室温铁磁半金属材料,具有较大的磁各向异性。

MnX (X = P, As) monolayers: a new type of two-dimensional intrinsic room temperature ferromagnetic half-metallic material with large magnetic anisotropy.

机构信息

School of Physics, Southeast University, Nanjing 211189, China.

出版信息

Nanoscale. 2019 Mar 7;11(10):4204-4209. doi: 10.1039/c8nr09734h.

Abstract

Recent experimentally demonstrated intrinsic two-dimensional (2D) magnetism has sparked intense interest for advanced spintronic applications. However, the rather low Curie temperature and small magnetic anisotropic energy (MAE) greatly limit their application scope. Here, by using density functional theory calculations, we predict a series of stable 2D MnX (X = P, As, Sb) monolayers, among which MnP and MnAs monolayers exhibit intrinsic ferromagnetic (FM) ordering and considerably large MAEs of 166 and 281 μeV per Mn atom, respectively. More interestingly, the 2D MnP and MnAs monolayers exhibit highly desired half-metallicity with wide spin gaps of about 3 eV. Monte Carlo simulations suggest markedly high Curie temperatures of MnP and MnAs monolayers, ∼495 K and 711 K, respectively. Besides, these monolayers are the lowest energy structures in the 2D search space with excellent dynamic and thermal stabilities. A viable experimental synthesis route is also proposed to produce MnX monolayers via the selective chemical etching method. The outstanding attributes of MnP and MnAs monolayers would substantially broaden the applicability of 2D magnetism for a wide range of applications.

摘要

最近实验证明的本征二维(2D)磁性激发了人们对先进的自旋电子学应用的浓厚兴趣。然而,居里温度相当低和磁各向异性能(MAE)较小极大地限制了它们的应用范围。在这里,通过使用密度泛函理论计算,我们预测了一系列稳定的二维 MnX(X = P、As、Sb)单层,其中 MnP 和 MnAs 单层表现出本征铁磁(FM)有序,并且每个 Mn 原子的 MAE 分别高达 166 和 281 μeV。更有趣的是,二维 MnP 和 MnAs 单层表现出所需的高自旋能隙约为 3 eV 的半金属性。蒙特卡罗模拟表明,MnP 和 MnAs 单层的居里温度分别约为 495 K 和 711 K,明显较高。此外,这些单层是二维搜索空间中能量最低的结构,具有出色的动力学和热稳定性。还提出了一种可行的实验合成途径,通过选择性化学刻蚀法来制备 MnX 单层。MnP 和 MnAs 单层的卓越特性将大大拓宽二维磁性在广泛应用中的适用性。

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