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采用无蚀刻剂转移法堆叠的大面积WS扭曲双层膜的低频拉曼研究

Low-Frequency Raman Study of Large-Area Twisted Bilayers of WS Stacked by an Etchant-Free Transfer Method.

作者信息

Boora Manpreet, Lin Yu-Chuan, Chen Chen, Trainor Nicholas, Robinson Joshua A, Redwing Joan M, Suh Jae Yong

机构信息

Department of Physics, Michigan Technological University, Houghton, Michigan 49931, United States.

Department of Materials Science and Engineering, The Pennsylvania State University, University Park, Pennsylvania 16802, United States.

出版信息

ACS Appl Mater Interfaces. 2024 Jan 17;16(2):2902-2911. doi: 10.1021/acsami.3c14708. Epub 2024 Jan 3.

Abstract

Monolayer transition metal dichalcogenides have strong intracovalent bonding. When stacked in multilayers, however, weak van der Waals interactions dominate interlayer mechanical coupling and, thus, influence their lattice vibrations. This study presents the frequency evolution of interlayer phonons in twisted WS bilayers, highly subject to the twist angle. The twist angle between the layers is controlled to modulate the spacing between the layers, which, in turn, affects the interlayer coupling that is probed by Raman spectroscopy. The shifts of high-frequency E (Γ) and A (Γ) phonon modes and their frequency separations are dependent on the twist angle, reflecting the correlation between the interlayer mechanical coupling and twist angle. In this work, we fabricated large-area, twisted bilayer WS with a clean interface with controlled twist angles. Polarized Raman spectroscopy identified new interlayer modes, which were not previously reported, depending on the twist angle. The appearance of breathing modes in Raman phonon spectra provides evidence of strong interlayer coupling in bilayer structures. We confirm that the twist angle can alter the exciton and trion dynamics of bilayers as indicated by the photoluminescence peak shift. These large-area controlled twist angle samples have practical applications in optoelectronic device fabrication and twistronics.

摘要

单层过渡金属二硫属化物具有很强的共价键。然而,当堆叠成多层时,弱范德华相互作用主导层间机械耦合,从而影响其晶格振动。本研究展示了高度依赖于扭转角的扭曲WS双层中层间声子的频率演化。控制层间的扭转角以调节层间距,进而影响通过拉曼光谱探测的层间耦合。高频E(Γ)和A(Γ)声子模式的位移及其频率间隔取决于扭转角,反映了层间机械耦合与扭转角之间的相关性。在这项工作中,我们制备了具有可控扭转角且界面清洁的大面积扭曲双层WS。偏振拉曼光谱识别出了新的层间模式,这些模式取决于扭转角,此前未曾报道过。拉曼声子光谱中呼吸模式的出现为双层结构中的强层间耦合提供了证据。我们证实,如光致发光峰位移所示,扭转角可以改变双层的激子和三重子动力学。这些大面积可控扭转角样品在光电器件制造和扭转电子学中具有实际应用。

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