Fast growth of large-grain and continuous MoS2 films through a self-capping vapor-liquid-solid method

Author:

Chang Ming-ChiangORCID,Ho Po-HsunORCID,Tseng Mao-FengORCID,Lin Fang-Yuan,Hou Cheng-HungORCID,Lin I-Kuan,Wang Hsin,Huang Pin-Pin,Chiang Chun-Hao,Yang Yueh-ChiangORCID,Wang I-Ta,Du He-YunORCID,Wen Cheng-Yen,Shyue Jing-JongORCID,Chen Chun-Wei,Chen Kuei-HsienORCID,Chiu Po-WenORCID,Chen Li-ChyongORCID

Abstract

AbstractMost chemical vapor deposition methods for transition metal dichalcogenides use an extremely small amount of precursor to render large single-crystal flakes, which usually causes low coverage of the materials on the substrate. In this study, a self-capping vapor-liquid-solid reaction is proposed to fabricate large-grain, continuous MoS2 films. An intermediate liquid phase-Na2Mo2O7 is formed through a eutectic reaction of MoO3 and NaF, followed by being sulfurized into MoS2. The as-formed MoS2 seeds function as a capping layer that reduces the nucleation density and promotes lateral growth. By tuning the driving force of the reaction, large mono/bilayer (1.1 mm/200 μm) flakes or full-coverage films (with a record-high average grain size of 450 μm) can be grown on centimeter-scale substrates. The field-effect transistors fabricated from the full-coverage films show high mobility (33 and 49 cm2 V−1 s−1 for the mono and bilayer regions) and on/off ratio (1 ~ 5 × 108) across a 1.5 cm × 1.5 cm region.

Funder

Ministry of Science and Technology, Taiwan

Publisher

Springer Science and Business Media LLC

Subject

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

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