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Thickness-dependent mobility in two-dimensional MoS2 transistors

机译:Thickness-dependent流动的二维MoS2 transistors

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摘要

Two-dimensional (2D) semiconductors such as mono and few-layer molybdenum disulphide (MoS2) are very promising for integration in future electronics as they represent the ultimate miniaturization limit in the vertical direction. While monolayer MoS2 attracted considerable attention due to its broken inversion symmetry, spin/valley coupling and the presence of a direct band gap, few-layer MoS2 remains a viable option for technological application where its higher mobility and lower contact resistance are believed to offer an advantage. However, it remains unclear whether multilayers are intrinsically superior or if they are less affected by environmental effects. Here, we report the first systematic comparison of the field-effect mobilities in mono-, bi- and trilayer MoS2 transistors after thorough in situ annealing in vacuum. We show that the mobility of field-effect transistors (FETs) based on monolayer MoS2 is significantly higher than that of FETs based on two or three layers. We demonstrate that it is important to remove the influence of gaseous adsorbates and water before comparing mobilities, as monolayers exhibit the highest sensitivity to ambient air exposure. In addition, we study the influence of the substrate roughness and show that this parameter does not affect FET mobilities.
机译:二维(2 d)半导体如mono和few-layer二硫化钼(监理)非常有前途的未来的集成电子产品,因为他们代表的终极小型化限制在垂直方向。而单层二硫化钼吸引了相当大的注意由于其破碎的镜面对称,旋转/谷耦合和直接的存在带隙,few-layer二硫化钼仍然是一个可行的选择高技术应用的流动性和降低接触电阻提供了一个优势。尚不清楚是否多层膜本质上优越或如果他们更少受环境影响的影响。报告的第一个系统的比较在mono -场效应的机动性,bi -trilayer二硫化钼晶体管后彻底的原位在真空退火。基于场效应晶体管(fet)单层二硫化钼明显高于基于两个或两个三层的场效应晶体管。证明一定要删除气体吸附物和水的影响单层膜表现出比较的机动性最高灵敏度暴露于环境空气。此外,我们研究基质的影响粗糙度和显示这个参数没有影响场效应晶体管的机动性。

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