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Interplay between structural deformations and flat band phenomenology in twisted bilayer antimonene.


ABSTRACT: In this work we apply first principles calculations to investigate the flat band phenomenology in twisted antimonene bilayer. We show that the relatively strong interlayer interactions which characterize this compound have profound effects in the emergence and properties of the flat bands. Specifically, when the moiré length becomes large enough to create well defined stacking patterns along the structure, out-of-plane displacements take place and are stabilized in the regions dominated by the AB stacking, leading to the emergence of flat bands. The interplay between structural and electronic properties allows for detection of flat bands in higher twist angles comparable to other two-dimensional materials. We also show that their energy position may be modulated by noncovalent functionalization with electron acceptor molecules.

SUBMITTER: Souza ACR 

PROVIDER: S-EPMC9038057 | biostudies-literature | 2021 Aug

REPOSITORIES: biostudies-literature

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Interplay between structural deformations and flat band phenomenology in twisted bilayer antimonene.

Souza Alan C R ACR   Matos Matheus J S MJS   Mazzoni Mario S C MSC  

RSC advances 20210817 45


In this work we apply first principles calculations to investigate the flat band phenomenology in twisted antimonene bilayer. We show that the relatively strong interlayer interactions which characterize this compound have profound effects in the emergence and properties of the flat bands. Specifically, when the moiré length becomes large enough to create well defined stacking patterns along the structure, out-of-plane displacements take place and are stabilized in the regions dominated by the A  ...[more]

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