Issue 34, 2024

Quasi-1D Moiré superlattices in self-twisted two-allotropic antimonene heterostructures

Abstract

Two-dimensional heterostructures, characterized by a twist angle between individual sublayers, offer unique and tunable properties distinct from standalone layers. These structures typically introduce a realm of exotic quantum phenomena due to the appearance of new, long range periodicities associated with Moiré superlattices. Using molecular beam epitaxy, we demonstrate the growth of bi-allotropic 2D-Sb heterostructures on a W(110) substrate composed of twisted α (α-Sb) and β (β-Sb) phases of antimonene. Due to the relatively weak interaction between sublayers, the twist angle is intrinsically determined for each heterostructure, revealing its inherent self-twisted nature. The different atomic lattice symmetries of both allotropes lead to the formation of distinctive quasi-1D Moiré superlattices, while the random nature of the twist angle allows for a wide modulation of the Moiré potential landscape. The observed Moiré patterns on β-Sb/α-Sb heterostructures were compared with a simple model, revealing satisfactory agreement with the experiments and strongly validating the formation of self-twisted β-Sb/α-Sb heterostructures. The samples were characterized in situ using low energy electron microscopy and diffraction techniques providing a real-time tracking of the growth process and insight into the atomic structure of the synthesized nanostructures.

Graphical abstract: Quasi-1D Moiré superlattices in self-twisted two-allotropic antimonene heterostructures

Supplementary files

Article information

Article type
Communication
Submitted
28 Mar 2024
Accepted
20 Jul 2024
First published
25 Jul 2024
This article is Open Access
Creative Commons BY license

Nanoscale, 2024,16, 15960-15966

Quasi-1D Moiré superlattices in self-twisted two-allotropic antimonene heterostructures

P. Dróżdż, M. Gołębiowski and R. Zdyb, Nanoscale, 2024, 16, 15960 DOI: 10.1039/D4NR02970D

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