Epitaxial growth of inch-scale single-crystal transition metal dichalcogenides through the patching of unidirectionally orientated ribbons

Author:

Yang Pengfei,Wang Dashuai,Zhao XiaoxuORCID,Quan Wenzhi,Jiang Qi,Li Xuan,Tang Bin,Hu Jingyi,Zhu Lijie,Pan Shuangyuan,Shi Yuping,Huan Yahuan,Cui Fangfang,Qiao Shan,Chen QingORCID,Liu ZhengORCID,Zou XiaolongORCID,Zhang YanfengORCID

Abstract

AbstractTwo-dimensional (2D) semiconductors, especially transition metal dichalcogenides (TMDs), have been envisioned as promising candidates in extending Moore’s law. To achieve this, the controllable growth of wafer-scale TMDs single crystals or periodic single-crystal patterns are fundamental issues. Herein, we present a universal route for synthesizing arrays of unidirectionally orientated monolayer TMDs ribbons (e.g., MoS2, WS2, MoSe2, WSe2, MoSxSe2-x), by using the step edges of high-miller-index Au facets as templates. Density functional theory calculations regarding the growth kinetics of specific edges have been performed to reveal the morphological transition from triangular domains to patterned ribbons. More intriguingly, we find that, the uniformly aligned TMDs ribbons can merge into single-crystal films through a one-dimensional edge epitaxial growth mode. This work hereby puts forward an alternative pathway for the direct synthesis of inch-scale uniform monolayer TMDs single-crystals or patterned ribbons, which should promote their applications as channel materials in high-performance electronics or other fields.

Funder

National Natural Science Foundation of China

Guangdong Innovative and Entrepreneurial Research Team Program

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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