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Electronically Weak Coupled Bilayer MoS2 at Various Twist Angles via Folding

机译:通过折叠以各种扭曲角度的电子弱耦合双层MOS2

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Constructing a bilayer system with defined twist angles is an effective way to engineer the physical properties of two-dimensional (2D) materials, opening up a new research area of twistronics. How to achieve high-quality bilayer 2D materials in a controlled and mass production way is of primary importance to this emerging area. In this work, we present a strategy for the large-scale fabrication of twisted bilayer molybdenum disulfide (MoS_(2)) through photolithography patterning and folding of single-crystal monolayer MoS_(2). Atomic resolution transmission electron spectroscopy directly confirms that the as-achieved folded bilayer MoS_(2) is of high quality with targeted twist angles. Various twist angles result in tuning Raman mode frequencies and direct optical transition energies. Due to the weak interlayer coupling between the twisted layers, folded bilayers exhibit an extremely high photoluminescence with doubled intensity as compared to the unfolded monolayer, indicating a possible application in optoelectronic devices. Our work provides a new strategy to tailor the properties of MoS_(2), which will be beneficial to twistable electronics.
机译:构建具有特定扭曲角度的双层体系是设计二维(2D)材料物理性质的有效方法,开辟了扭曲电子学的新研究领域。如何以可控的大规模生产方式获得高质量的双层2D材料对这一新兴领域至关重要。在这项工作中,我们提出了一种通过光刻图案化和折叠单晶单分子膜MoS_2来大规模制备扭曲双层二硫化钼(MoS_2)的策略。原子分辨透射电子能谱直接证实了折叠双层MoS_2具有高质量和目标扭曲角。不同的扭转角可以调谐拉曼模式频率和直接的光学跃迁能量。由于扭曲层之间的弱层间耦合,折叠双层膜表现出极高的光致发光强度,比未折叠单层膜的光致发光强度高一倍,这表明折叠双层膜可能在光电子器件中应用。我们的工作提供了一种新的策略来定制MoS_2的特性,这将有利于可扭转电子器件。

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