November 2023

Journal

Surfactant-Mediated Growth and Patterning of Atomically Thin Transition Metal Dichalcogenides

By:
Li, Xufan; Kahn, Ethan; Chen, Gugang; Sang, Xiahan ; Lei, Jichen; Passarello, Donata ; Oyedele, Akinola; Zakhidov, Dante; Wen chen, Kai; Xun chen, Yu; Hsien hsieh, Shang; Fujisawa, Kazunori; Unocic, Raymond R; Xiao, Kai ; Salleo, Alberto; Toney, Michael F.; Hao chen, Chia; Kaxiras, Efthimios; Terrones, Mauricio; Yakobson, Boris; Harutyunyan, Avetik
Journal Name:
ACS Nano
Page Number:
6570-6581
Volume:
14
Issue Number:
6
Publication Date:
November 9, 2023
View DOI Listing:
https://doi.org/10.1021/acsnano.0c00132

Abstract

The role of additives in facilitating the growth of conventional semiconducting thin films is well-established. Apparently, their presence is also decisive in the growth of two-dimensional transition metal dichalcogenides (TMDs), yet their role remains ambiguous. In this work, we show that the use of sodium bromide enables synthesis of TMD monolayers via a surfactant-mediated growth mechanism, without introducing liquefaction of metal oxide precursors. We discovered that sodium ions provided by sodium bromide chemically passivate edges of growing molybdenum disulfide crystals, relaxing in-plane strains to suppress 3D islanding and promote monolayer growth. To exploit this growth model, molybdenum disulfide monolayers were directly grown into desired patterns using predeposited sodium bromide as a removable template. The surfactant-mediated growth not only extends the families of metal oxide precursors but also offers a way for lithography-free patterning of TMD monolayers on various surfaces to facilitate fabrication of atomically thin electronic devices.


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