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Two-dimensional Dy doped MoS_2 ferromagnetic sheets

机译:二维Dy掺杂MoS_2铁磁片

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摘要

Magnetic two-dimensional materials have attracted immense consideration as spintronic devices. However, design and synthesis of the magnetic two-dimensional MoS2 crystals with more controllable electronic structure and better conductivity are still great challenges. Here, we make a breakthrough to synthesize the MoS2:Dy sheets with robust adjustable room-temperature ferromagnetic properties by a gas-liquid chemical deposition method. The as-synthesized samples are characterized by XRD, Raman, TEM, HRTEM and XPS. Furthermore, the magnetic properties of the samples are also investigated by VSM and Squid. The maximum observed saturation magnetization is 0.023 emu/g. The origin of ferromagnetism in the samples is investigated by using the first-principles calculations based on the density functional theory. The ferromagnetism is mainly related to the exchange interactions among the S 3p, Mo 4d and Dy 5d orbits. The results indicate that the transformation of the localized charges can effectively engineer and manipulate the magnetic properties of 2D materials, making MoS2 a potential candidate for spintronics and electronic applications and providing a new perspective on other 2D layered materials in spintronics application.
机译:磁性二维材料作为自旋电子器件引起了广泛的关注。然而,具有更可控的电子结构和更好的导电性的二维磁性MoS 2晶体的设计和合成仍然是巨大的挑战。在这里,我们取得了突破,通过气-液化学沉积方法合成了具有稳定的可调节室温铁磁性能的MoS2:Dy薄板。合成后的样品用XRD,拉曼,TEM,HRTEM和XPS表征。此外,还通过VSM和Squid研究了样品的磁性能。观察到的最大饱和磁化强度为0.023 emu / g。通过基于密度泛函理论的第一性原理计算,研究了样品中铁磁性的起源。铁磁性主要与S 3p,Mo 4d和Dy 5d轨道之间的交换相互作用有关。结果表明,局部电荷的转变可以有效地设计和操纵2D材料的磁性,从而使MoS2成为自旋电子学和电子应用的潜在候选者,并为自旋电子学应用中的其他2D层状材料提供了新的视角。

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