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Modulating the magnetic properties of MoS2 monolayers by group VIII doping and vacancy engineering

机译:通过VIII族掺杂和空位工程调节MoS2单层的磁性

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In this work, density functional theory is adopted to study the electronic and magnetic properties of MoS _(2) monolayers combined with a single S vacancy defect and a group VIII (G8) atom dopant, in which the dopant is incorporated via Mo substitution. The calculated results show that the magnetic properties of monolayer MoS _(2) can be tuned by changing the distribution of the G8 atom and S vacancy. The S vacancy tends to decrease the net magnetic moment of the doped system when these two defects are in their closest configuration. By adjusting the distance between the dopant and the S vacancy, the doped MoS _(2) monolayer may show a variable net magnetic moment. In particular, all of the Ni-doped MoS _(2) monolayers show zero magnetic moment with or without an S vacancy. The mean-field approximation is used to estimate the Curie temperature ( T _(C) ). Our results show that Fe, Co, Ru, Rh, Os and Ir-doped MoS _(2) monolayers are potential candidates for ferromagnetism above room temperature. The density of states calculations provide further explanations as to the magnetic behavior of these doped systems. These results provide a new route for the potential application of atomically thin dilute magnetic semiconductors in spintronic devices by employing monolayer MoS _(2) .
机译:在这项工作中,采用密度泛函理论来研究MoS_(2)单层与单个S空位缺陷和VIII(G8)原子掺杂剂结合的电子和磁性,其中通过Mo取代掺入掺杂剂。计算结果表明,可以通过改变G8原子的分布和S空位来调节单层MoS _(2)的磁性。当这两个缺陷处于最接近的配置时,S空位往往会降低掺杂系统的净磁矩。通过调整掺杂物和S空位之间的距离,掺杂的MoS_(2)单层可以显示可变的净磁矩。特别地,所有Ni掺杂的MoS_(2)单层在有或没有S空位时都显示零磁矩。平均场近似值用于估计居里温度(T _(C))。我们的结果表明,Fe,Co,Ru,Rh,Os和Ir掺杂的MoS _(2)单层是室温下铁磁性的潜在候选物。状态密度计算为这些掺杂系统的磁性能提供了进一步的解释。这些结果为采用单层MoS_(2)在自旋电子器件中潜在地应用原子稀稀磁半导体提供了一条新途径。

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