论文标题

应变对单层CRSE的空气稳定性的影响

Strain Effect on Air-Stability of Monolayer CrSe2

论文作者

Chen, Jun, Zhou, Linwei, Liu, Nanshu, Qiao, Jingsi, Zhou, Xieyu, Wang, Cong, Ji, Wei

论文摘要

二维(2D)磁性材料的发现为Spintronics和数据存储设备带来了巨大的研究价值。但是,它们的空气稳定性以及氧化机制尚未公布,这限制了其进一步的应用。在这里,通过第一原理计算,我们对单层CRSE2和双轴拉伸应变效应的氧化过程进行了详细的研究。我们在原始CRSE2板上发现O2的解离过程是一种吸热反应,反应能量屏障为0.53 eV,表明其热力学稳定性。然而,这种过程在达到1%的双轴拉伸应变下变成放热,伴随着反应屏障的降低,导致稳定性降低。这些结果表明,平面应变在修饰CRSE2的空气稳定性方面起着重要作用,并在搜索适当的底物以稳定2D磁性材料方面散发出相当大的灯光。

The discovery of two dimensional (2D) magnetic materials has brought great research value for spintronics and data storage devices. However, their air-stability as well as the oxidation mechanism has not been unveiled, which limits their further applications. Here, by first-principles calculations, we carried out a detailed study on the oxidation process of monolayer CrSe2 and biaxial tensile strain effect. We found dissociation process of O2 on pristine CrSe2 sheet is an endothermic reaction with a reaction energy barrier of 0.53 eV, indicating its thermodynamics stability. However, such a process becomes exothermic under a biaxial tensile strain reaching 1%, accompanying with a decreased reaction barrier, leading to reduced stability. These results manifest that in-plane strain plays a significant role in modifying air-stability in CrSe2 and shed considerable light on searching appropriate substrate to stabilize 2D magnetic materials.

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