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Anisotropic strain in epitaxial single-layer molybdenum disulfide on Ag(110)

Authors :
Elisabetta Travaglia
Paolo Lacovig
Philip Hofmann
Sanjoy K. Mahatha
Harsh Bana
Alessandro Baraldi
Luca Bignardi
Silvano Lizzit
Charlotte E. Sanders
Daniel Lizzit
Bignardi, Luca
Mahatha, Sanjoy K
Lizzit, Daniel
Bana, Harsh
Travaglia, Elisabetta
Lacovig, Paolo
Sanders, Charlotte
Baraldi, Alessandro
Hofmann, Philip
Lizzit, Silvano
Source :
Bignardi, L, Mahatha, S K, Lizzit, D, Bana, H, Travaglia, E, Lacovig, P, Sanders, C, Baraldi, A, Hofmann, P & Lizzit, S 2021, ' Anisotropic strain in epitaxial single-layer molybdenum disulfide on Ag(110) ', Nanoscale, vol. 13, no. 44, pp. 18789-18798 . https://doi.org/10.1039/d1nr05584d
Publication Year :
2021

Abstract

In this work we prove that ordered single-layer MoS2 can be grown epitaxially on Ag(110), despite the different crystalline geometry of adsorbate and substrate. A comprehensive investigation of electronic and structural features of this interface is carried out by combining several techniques. Photoelectron diffraction experiments show that only two mirror crystalline domains coexist in equal amount in the grown layer. Angle-resolved valence band photoelectron spectroscopy shows that MoS2 undergoes a semiconductor-to-metal transition. Low-energy electron diffraction and scanning-tunneling microscopy experiments reveal the formation of a commensurate moiré superlattice at the interface, which implies an anisotropic uniaxial strain of the MoS2 crystalline lattice of ca. 3% in the [110] direction of the Ag(110) surface. These outcomes suggest that the epitaxial growth on anisotropic substrates might be an effective and scalable method to generate a controlled and homogeneous strain in MoS2 and possibly other transition-metal dichalcogenides.

Details

Language :
English
Database :
OpenAIRE
Journal :
Bignardi, L, Mahatha, S K, Lizzit, D, Bana, H, Travaglia, E, Lacovig, P, Sanders, C, Baraldi, A, Hofmann, P & Lizzit, S 2021, ' Anisotropic strain in epitaxial single-layer molybdenum disulfide on Ag(110) ', Nanoscale, vol. 13, no. 44, pp. 18789-18798 . https://doi.org/10.1039/d1nr05584d
Accession number :
edsair.doi.dedup.....57e45fde8d567233c84aa6007998e9ab
Full Text :
https://doi.org/10.1039/d1nr05584d