Moiré-Assisted Realization of Octahedral MoTe2 Monolayer

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Abstract

A current key challenge in 2D materials is the realization of emergent quantum phenomena in hetero structures via controlling the moiré potential created by the periodicity mismatch between adjacent layers, as highlighted by the discovery of superconductivity in twisted bilayer graphene. Generally, the lattice structure of the original host material remains unchanged even after the moiré superlattice is formed. However, much less attention is paid for the possibility that the moiré potential can also modify the original crystal structure itself. Here, it is demonstrated that octahedral MoTe2 which is unstable in bulk is stabilized in a commensurate MoTe2/graphene hetero-bilayer due to the moiré potential created between the two layers. It is found that the reconstruction of electronic states via the moiré potential is responsible for this stabilization, as evidenced by the energy-gap opening at the Fermi level observed by angle-resolved photoemission and scanning tunneling spectroscopies. The present results provide a fresh approach to realize novel 2D quantum phases by utilizing the moiré potential.

Original languageEnglish
Article number2304461
JournalAdvanced Science
Volume10
Issue number34
DOIs
Publication statusPublished - 2023 Dec 6

Keywords

  • angle-resolved photoemission spectroscopy
  • moiré superlattice
  • molecular beam epitaxy
  • scanning tunneling microscopy
  • transition metal dichalcogenides

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