Orientation dependent interlayer stacking structure in bilayer MoS2 domains

We have studied the atomic structure of small secondary domains that nucleate on monolayer MoS2 grown by chemical vapour deposition (CVD), which form the basis of bilayer MoS2. The small secondary bilayer domains have a faceted geometry with three-fold symmetry and adopt two distinct orientations wi...

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Main Authors: Wang, S, Sawada, H, Allen, C, Kirkland, A, Warner, J
Format: Journal article
Language:English
Published: Royal Society of Chemistry 2017
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author Wang, S
Sawada, H
Allen, C
Kirkland, A
Warner, J
author_facet Wang, S
Sawada, H
Allen, C
Kirkland, A
Warner, J
author_sort Wang, S
collection OXFORD
description We have studied the atomic structure of small secondary domains that nucleate on monolayer MoS2 grown by chemical vapour deposition (CVD), which form the basis of bilayer MoS2. The small secondary bilayer domains have a faceted geometry with three-fold symmetry and adopt two distinct orientations with 60° rotation relative to an underlying monolayer MoS2 single crystal sheet. The two distinct orientations are associated with the 2H and 3R stacking configuration for bilayer MoS2. Atomic resolution images have been recorded using annular dark field scanning transmission electron microscopy (ADF-STEM) that show the edge termination, lattice orientation and stacking sequence of the bilayer domains relative to the underlying monolayer MoS2. These results provide important insights that bilayer MoS2 growth from 60° rotated small nuclei on the surface of monolayer MoS2 could lead to defective boundaries when merged to form larger continuous bilayer regions and that pure AA' or AB bilayer stacking may be challenging unless from a single seed.
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spelling oxford-uuid:724dddc1-1f1f-4d02-94a1-c6c55e850c672022-03-26T19:49:14ZOrientation dependent interlayer stacking structure in bilayer MoS2 domainsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:724dddc1-1f1f-4d02-94a1-c6c55e850c67EnglishSymplectic Elements at OxfordRoyal Society of Chemistry2017Wang, SSawada, HAllen, CKirkland, AWarner, JWe have studied the atomic structure of small secondary domains that nucleate on monolayer MoS2 grown by chemical vapour deposition (CVD), which form the basis of bilayer MoS2. The small secondary bilayer domains have a faceted geometry with three-fold symmetry and adopt two distinct orientations with 60° rotation relative to an underlying monolayer MoS2 single crystal sheet. The two distinct orientations are associated with the 2H and 3R stacking configuration for bilayer MoS2. Atomic resolution images have been recorded using annular dark field scanning transmission electron microscopy (ADF-STEM) that show the edge termination, lattice orientation and stacking sequence of the bilayer domains relative to the underlying monolayer MoS2. These results provide important insights that bilayer MoS2 growth from 60° rotated small nuclei on the surface of monolayer MoS2 could lead to defective boundaries when merged to form larger continuous bilayer regions and that pure AA' or AB bilayer stacking may be challenging unless from a single seed.
spellingShingle Wang, S
Sawada, H
Allen, C
Kirkland, A
Warner, J
Orientation dependent interlayer stacking structure in bilayer MoS2 domains
title Orientation dependent interlayer stacking structure in bilayer MoS2 domains
title_full Orientation dependent interlayer stacking structure in bilayer MoS2 domains
title_fullStr Orientation dependent interlayer stacking structure in bilayer MoS2 domains
title_full_unstemmed Orientation dependent interlayer stacking structure in bilayer MoS2 domains
title_short Orientation dependent interlayer stacking structure in bilayer MoS2 domains
title_sort orientation dependent interlayer stacking structure in bilayer mos2 domains
work_keys_str_mv AT wangs orientationdependentinterlayerstackingstructureinbilayermos2domains
AT sawadah orientationdependentinterlayerstackingstructureinbilayermos2domains
AT allenc orientationdependentinterlayerstackingstructureinbilayermos2domains
AT kirklanda orientationdependentinterlayerstackingstructureinbilayermos2domains
AT warnerj orientationdependentinterlayerstackingstructureinbilayermos2domains