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Ferromagnetism in ultrathin VS2 nanosheets

机译:超薄VS2纳米片中的铁磁性

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摘要

Two-dimensional nanosheet crystals have potential applications in nano-electronic devices, Prompted by the recently observed ferromagnetism in pristine VX2 (X = S and Se) monolayers by first-principle calculations, we provide the experimental evidence for room temperature ferromagnetism in ultrathin VS2 nanosheets by observing their clear hysteresis and ferromagnetic resonance. The first-principle calculation results indicate that unusual hybridization of the V 3d and S 3p orbitals occurs in the monolayer VS2, and the relative transfer of electrons between the V and S atoms plays an important role in the transition of the spin moments. According to the previous work, the stable ferromagnetism in ultrathin VS2 nanosheets is considered as a competitive effect between through-bond and through-space interactions, where the through-bond interactions dominate. This finding opens a new path to explore the spintronics in pristine two-dimensional nanostructures.
机译:二维纳米片晶体在纳米电子器件中具有潜在的应用,通过第一性原理计算,由最近观察到的原始VX2(X = S和Se)单层中的铁磁性提示,我们提供了超薄VS2纳米片中室温铁磁性的实验证据。通过观察其清晰的磁滞和铁磁谐振。第一性原理计算结果表明,单层VS2中发生了V 3d和S 3p轨道的不寻常杂化,并且电子在V和S原子之间的相对转移在自旋矩的跃迁中起重要作用。根据先前的工作,超薄VS2纳米片材中稳定的铁磁性被认为是贯穿键和贯穿空间相互作用之间的竞争效应,其中贯穿键相互作用占主导。这一发现为探索原始二维纳米结构中的自旋电子学开辟了一条新途径。

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