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Prediction of the structural and electronic properties of MoTiS monolayers via first principle simulations

Ankit Kumar Verma et al · SAGE Publishing · 2020

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Two-dimensional transition metal dichalcogenides have gained great attention because of their peculiar physical properties that make them interesting for a wide range of applications. Lately, alloying between different transition metal dichalcogenides has been proposed as an approach to control two-dimensional phase stability and to obtain compounds with tailored characteristics. In this theoretical study, we predict the phase diagram and the electronic properties of Mo x Ti 1− x S 2 at varying stoichiometry and show how the material is metallic, when titanium is the predominant species, while it behaves as a p -doped semiconductor, when approaching pure MoS 2 composition. Correspondingly, the thermodynamically most stable phase switches from the tetragonal to the hexagonal one. Further, we present an example which shows how the proposed alloys can be used to obtain new vertical two-dimensional heterostructures achieving effective electron/hole separation.

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APA 7

al, A. K. V. E. (2020). Prediction of the structural and electronic properties of MoTiS monolayers via first principle simulations. https://doi.org/10.1177/1847980420955093

MLA

al, Ankit Kumar Verma et. "Prediction of the structural and electronic properties of MoTiS monolayers via first principle simulations." 2020. https://doi.org/10.1177/1847980420955093.

Chicago

al, Ankit Kumar Verma et. 2020. "Prediction of the structural and electronic properties of MoTiS monolayers via first principle simulations.". https://doi.org/10.1177/1847980420955093.

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al, A. K. V. E. 2020, Prediction of the structural and electronic properties of MoTiS monolayers via first principle simulations, SAGE Publishing, available at: https://doi.org/10.1177/1847980420955093 [Accessed 9 Aug. 2026].

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Titolo
Prediction of the structural and electronic properties of MoTiS monolayers via first principle simulations
Autore / collaboratori
Ankit Kumar Verma et al
Editore
SAGE Publishing
Anno di pubblicazione
2020
ISSN
1847-9804
ISSN
1847-9804
Lingua
Inglés
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