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- Title
Direct synthesis and in situ characterization of monolayer parallelogrammic rhenium diselenide on gold foil.
- Authors
Jiang, Shaolong; Hong, Min; Wei, Wei; Zhao, Liyun; Zhang, Na; Zhang, Zhepeng; Yang, Pengfei; Gao, Nan; Zhou, Xiebo; Xie, Chunyu; Shi, Jianping; Huan, Yahuan; Tong, Lianming; Zhao, Jijun; Zhang, Qing; Fu, Qiang; Zhang, Yanfeng
- Abstract
Rhenium diselenide (ReSe2) has recently garnered great research interest due to its distorted 1T structure, anisotropic physical properties, and applications in polarization-sensitive photodetectors. However, ReSe2 synthesized by chemical vapor deposition (CVD) is usually a multilayer/polycrystalline material containing numerous grain boundaries, thereby hindering its further applications. Here we describe the direct CVD growth of high-quality monolayer ReSe2 single crystals with a parallelogram shape arising from its anisotropic structure on a gold foil substrate. In particular, we use low-energy electron microscopy/diffraction combined with scanning tunneling microscopy/spectroscopy to determine the atomic-scale structure, domain orientation/boundaries, and band features of monolayer ReSe2 flakes grown directly on gold foils. This work may open new opportunities for the direct synthesis and in situ characterization of CVD-grown monolayer ReSe2. Improving the synthesis of crystalline monolayer transition metal dichalcogenides requires insight into domain and boundary structures. Here, the authors produce monolayer rhenium diselenide by chemical vapour deposition onto gold foil, allowing in situ analysis of domain and defect structure.
- Subjects
MONOMOLECULAR films; PARALLELOGRAMS; RHENIUM compounds; SELENIDES; GOLD foil; CHEMICAL structure
- Publication
Communications Chemistry, 2018, Vol 1, Issue 1, pN.PAG
- ISSN
2399-3669
- Publication type
Article
- DOI
10.1038/s42004-018-0010-6