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Directed exfoliating and ordered stacking of transition-metal-dichalcogenides

机译:直接去死皮和有序堆放transition-metal-dichalcogenides

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摘要

Two-dimensional van der Waals crystals provide a limitless scope for designing novel combinations of physical properties by controlling the stacking order or twist angle of individual layers. Lattice orientation between stacked monolayers is significant not only for breaking the engineering symmetry but also for the study of many-body quantum phases and band topology. Thus far the state-of-the-art exfoliation approaches focus on the achievements of quality, size, yield, and scalability, while lacking sufficient information on lattice orientation. Consequently, interlayer alignment is usually determined by later experiments, such as the second harmonic generation spectroscopy, which increase the number of trials and errors for a designed artificial ordering and hampered the efficiency of systematic study. Herein, we report a lattice orientation distinguishable exfoliation method via gold favor epitaxy along the specific atomic step edges, meanwhile, fulfilling the requirements of high-quality, large-size, and high-yield monolayers. Hexagonal- and rhombohedral-stacking configurations of bilayer transition metal dichalcogenides are built directly at once as a result of foreseeing the lattice orientation. Optical spectroscopy, electron diffraction, and angle-resolved photoemission spectroscopy are used to study crystal quality, symmetric breaking, and band tuning, which support the exfoliating mechanism we proposed. This strategy shows the ability to facilitate the development of ordering stacking especially for multilayers assembling in the future.
机译:二维晶体范德瓦耳斯提供无限的空间设计新颖的组合通过控制的物理属性堆垛顺序或个人的扭转角层。单层膜不仅破坏具有重要意义工程研究对称也多体的量子拓扑阶段和乐队。迄今为止最先进的剥落方法关注的成就品质,大小、产量和可伸缩性,而缺乏足够的晶格取向的信息。因此,层间对齐通常是由后来的实验,如二次谐波发生光谱,增加数量的试验和错误设计人工排序和阻碍了系统研究的效率。晶格取向的剥落方法通过黄金支持沿着特定的外延与此同时,原子步骤边缘实现的高质量的需求,大型,高收益单层膜。rhombohedral-stacking配置的双分子层过渡金属dichalcogenides直接结果的预见晶格取向。电子衍射和angle-resolved光电发射光谱法用于研究晶体质量、对称的破坏和乐队调优,支持去死皮的机制我们提议。促进发展的排序堆尤其是对多层膜组装的的未来。

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