论文标题

对于2D物质异质结构的石墨烯上的几层MOS2的大面积电沉积

Large-Area Electrodeposition of Few-Layer MoS2 on Graphene for 2D Material Heterostructures

论文作者

Noori, Yasir J., Thomas, Shibin, Ramadan, Sami, Smith, Danielle E., Greenacre, Victoria K., Abdelazim, Nema, Han, Yisong, Beanland, Richard, Hector, Andrew L., Klein, Norbert, Reid, Gill, Bartlett, Phillip N., de Groot, Cornelis H.

论文摘要

涉及二维(2D)过渡金属二分法以及其他材料(例如石墨烯)的异质结构具有很强的潜力,可以成为许多电子和光电应用的基本构建块。这种异质结构的整合和可扩展的制造是在新技术中释放这些材料的潜力的本质。我们第一次通过非水性电沉积在石墨烯上表现出了几层MOS2膜的生长。通过扫描和透射电子显微镜,原子力显微镜,拉曼光谱,能量和波长色散X射线光谱以及X射线光电光谱法等方法,我们表明,这种沉积方法可以产生与石墨烯相比高质量和均匀性的大区块MOS2膜。我们通过测量通过膜的光引起的电流来揭示这些异质结构的潜力。这些结果铺平了开发电沉积方法的道路,用于用于许多应用的异质结构的大规模生长。

Heterostructures involving two-dimensional (2D) transition metal dichalcogenides and other materials such as graphene have a strong potential to be the fundamental building block of many electronic and opto-electronic applications. The integration and scalable fabrication of such heterostructures is of essence in unleashing the potential of these materials in new technologies. For the first time, we demonstrate the growth of few-layer MoS2 films on graphene via non-aqueous electrodeposition. Through methods such as scanning and transmission electron microscopy, atomic force microscopy, Raman spectroscopy, energy and wavelength dispersive X-ray spectroscopies and X-ray photoelectron spectroscopy, we show that this deposition method can produce large-area MoS2 films with high quality and uniformity over graphene. We reveal the potential of these heterostructures by measuring the photo-induced current through the film. These results pave the way towards developing the electrodeposition method for the large-scale growth of heterostructures consisting of varying 2D materials for many applications.

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