A vapor-phase-assisted growth route for large-scale uniform deposition of MoS 2 monolayer films

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Abstract

In this work a vapor-phase-assisted approach for the synthesis of monolayer MoS 2 is demonstrated, based on the sulfurization of thin MoO 3−x precursor films in an H 2 S atmosphere. We discuss the co-existence of various possible growth mechanisms, involving solid-gas and vapor-gas reactions. Different sequences were applied in order to control the growth mechanism and to obtain monolayer films. These variations include the sample temperature and a time delay for the injection of H 2 S into the reaction chamber. The optimized combination allows for tuning the process route towards the potentially more favorable vapor-gas reactions, leading to an improved material distribution on the substrate surface. Raman and photoluminescence (PL) spectroscopy confirm the formation of ultrathin MoS 2 films on SiO 2 /Si substrates with a narrow thickness distribution in the monolayer range on length scales of a few millimeters. Best results are achieved in a temperature range of 950-1000 °C showing improved uniformity in terms of Raman and PL line shapes. The obtained films exhibit a PL yield similar to mechanically exfoliated monolayer flakes, demonstrating the high optical quality of the prepared layers.

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Pareek, D., Gonzalez, M. A., Zohrabian, J., Sayed, M. H., Steenhoff, V., Lattyak, C., … Gütay, L. (2019). A vapor-phase-assisted growth route for large-scale uniform deposition of MoS 2 monolayer films. RSC Advances, 9(1), 107–113. https://doi.org/10.1039/c8ra08626e

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