Exploring electronic, optical, and phononic properties of MgX (<FOR VERIFICATION> X = <FOR VERIFICATION> C, N, and <FOR VERIFICATION> O) monolayers using first principle calculations

Nzar Rauf Abdullah, Botan Jawdat Abdullah, Yousif Hussein Azeez, Vidar Gudmundsson

Research output: Contribution to journalArticlepeer-review

Abstract

The electronic, the thermal, and the optical properties of hexagonal MgX monolayers (where <FOR VERIFICATION>X = <FOR VERIFICATION>C, <FOR VERIFICATION>N, and <FOR VERIFICATION>O) are investigated via first principles studies. Ab-initio molecular dynamic, AIMD, simulations using NVT ensembles are performed to check the thermodynamic stability of the monolayers. We find that an MgO monolayer has semiconductor properties with a good thermodynamic stability, while the MgC and the MgN monolayers have metallic characters. The calculated phonon band structures of all the three considered monolayers show no imaginary nonphysical frequencies, thus indicating that they all have excellent dynamic stability. The MgO monolayer has a larger heat capacity then the MgC and the MgN monolayers. The metallic monolayers demonstrate optical response in the IR as a consequence of the metal properties, whereas the semiconducting MgO monolayer demonstrates an active optical response in the near-UV region. The optical response in the near-UV is beneficial for nanoelectronics and photoelectric applications. A semiconducting monolayer is a great choice for thermal management applications since its thermal properties are more attractive than those of the metallic monolayer in terms of heat capacity, which is related to the change in the internal energy of the system.

Original languageEnglish
Article number2351008
JournalFunctional Materials Letters
Volume16
Issue number3-4
DOIs
Publication statusPublished - 1 May 2023

Bibliographical note

Publisher Copyright: © 2023 World Scientific Publishing Company.

Other keywords

  • DFT
  • electronic structure
  • optical properties
  • thermal properties

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