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Growth of Large-Area and Highly Crystalline MoS<sub>2</sub> Thin Layers on Insulating Substrates

Nano Letters · 2012 · Vol. 12(3) · pp. 1538–1544
Keng-Ku LiuWenjing ZhangYi-Hsien LeeYu-Chuan LinMu-Tung ChangChing-Yuan SuChia-Seng ChangHai LiYumeng ShiHua ZhangChao-Sung LaiLain-Jong Li

Abstract

The two-dimensional layer of molybdenum disulfide (MoS(2)) has recently attracted much interest due to its direct-gap property and potential applications in optoelectronics and energy harvesting. However, the synthetic approach to obtain high-quality and large-area MoS(2) atomic thin layers is still rare. Here we report that the high-temperature annealing of a thermally decomposed ammonium thiomolybdate layer in the presence of sulfur can produce large-area MoS(2) thin layers with superior electrical performance on insulating substrates. Spectroscopic and microscopic results reveal that the synthesized MoS(2) sheets are highly crystalline. The electron mobility of the bottom-gate transistor devices made of the synthesized MoS(2) layer is comparable with those of the micromechanically exfoliated thin sheets from MoS(2) crystals. This synthetic approach is simple, scalable, and applicable to other transition metal dichalcogenides. Meanwhile, the obtained MoS(2) films are transferable to arbitrary substrates, providing great opportunities to make layered composites by stacking various atomically thin layers.

2D Materials and ApplicationsOrganic and Molecular Conductors ResearchNanowire Synthesis and ApplicationsMolybdenum disulfideStackingThin filmLayer (electronics)MolybdenumAnnealing (glass)Atomic layer depositionTransistor

MeSH terms

CrystallizationElectric ConductivityMaterials TestingMembranes, ArtificialMolecular ConformationMolybdenumParticle SizeSulfidesSurface PropertiesMacromolecular SubstancesNanostructures
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