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Scalable faceted voids with luminescent enhanced edges in WS2 monolayers

机译:可伸缩的在上雕琢平面的空洞与发光增强边WS2单层膜

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摘要

A scalable approach is needed in the formation of atomically flat edges with specific terminations to enhance local properties for optoelectronic, nanophotonic and energy applications. We demonstrate point defect clustering-driven faceted void formations with luminescent enhanced edges in WS2 monolayers during large-scale CVD growth and controlled annealing. With the aid of aberration-corrected scanning transmission electron microscopy (AC-STEM) high angle annular dark field (HAADF) imaging, we probed atomic terminations of S and W to explain observed luminescence enhancement in alternate edges. Faceted void formation in monolayer WS2 was found to be sensitive to annealing temperature, time, gas environment and precursor supply. Our observations of areal coverage evolution over time revealed competition between monolayer WS2 growth and void formation at 850 degrees C. While the initial stage was dominated by monolayer growth, defect generation and void growth dominated at later stages and provided an optimum processing window for monolayer WS2 as well as faceted void growth. Growth of faceted voids not only followed the geometry of monolayer facets but also showed similar atomic terminations at the edges and thus enabled local manipulation of photoluminescence enhancement with an order of magnitude increase in intensity. The developed CVD processing enabled multi-fold increase in the luminescent active edge length through the formation of faceted voids within the WS2 monolayer.
机译:需要一个可伸缩的方法的形成与特定的终端自动平的边缘提高当地的光电性质,纳米光子和能源应用。展示点缺陷clustering-driven在上雕琢平面的孔隙形成与发光增强在二硫化钨层边缘大规模的心血管疾病增长和控制退火。aberration-corrected扫描透射电子显微镜(AC-STEM)高角度环形暗视野(HAADF)成像,我们探索原子终止妊娠的年代和W解释观察到的在交替发光增强边缘。在上雕琢平面的空隙形成单层二硫化钨被发现敏感退火温度、时间气体环境和前体供应。观察区域覆盖进化的时间显示二硫化钨单层之间的竞争增长和空隙形成850度c初期以单层为主增长,缺陷生成和无效的增长在后期,提供一个最佳的主导为单层WS2以及处理窗口在上雕琢平面的无效的增长。只有单层的几何面但也表现出相似的原子终止妊娠边缘,从而使当地的操纵光致发光增强的秩序级增加强度。心血管疾病处理使正在成倍增加发光通过活跃的边缘长度二硫化钨形成面孔隙内单层。

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