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

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 associat...

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Veröffentlicht in:Nanoscale 2024-08, Vol.16 (34), p.1596-15966
Hauptverfasser: Dró d, Piotr, Go biowski, Mariusz, Zdyb, Ryszard
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Sprache:eng
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Zusammenfassung: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. The growth of bi-allotropic 2D Sb heterostructures on a W(110) substrate, composed of α and β phases of antimonene, is demonstrated. The layered structure shows a self-twisted nature, providing a wide variety of quasi-1D Moiré superlattices.
ISSN:2040-3364
2040-3372
2040-3372
DOI:10.1039/d4nr02970d