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Published on: August 29, 2017
Evaporative thinning: a facile synthesis method for high quality ultrathin layers of 2D crystals
Yi-Kai Huang1, Jeffrey D Cain, Lintao Peng
1Department of Materials Science and Engineering, ‡Department of Electrical Engineering and Computer Science, §Department of Applied Physics, and ∥Department of Chemistry, Northwestern University , Evanston, Illinois 60208, United States.
Abstract:
The palette of two-dimensional materials has expanded beyond graphene in recent years to include the chalcogenides among other systems. However, there is a considerable paucity of methods for controlled synthesis of mono- and/or few-layer two-dimensional materials with desirable quality, reproducibility, and generality. Here we show a facile top-down synthesis approach for ultrathin layers of 2D materials down to monolayer. Our method is based on controlled evaporative thinning of initially large sheets, as deposited by vapor mass-transport. Rather than optimizing conditions for monolayer deposition, our approach makes use of selective evaporation of thick sheets to control the eventual thickness, down to a monolayer, a process which appears to be self-stopping. As a result, 2D sheets with high yield, high reproducibility, and excellent quality can be generated with large (>10 μm) and thin (∼ 1-2 nm) dimensions. Evaporative thinning promises to greatly reduce the difficulty involved in isolating large, mono- and few-layers of 2D materials for subsequent studies.

