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Structural, electronic and optical properties of pristine and functionalized MgO monolayers: a first principles study. | LitMetric

AI Article Synopsis

  • The paper investigates the effects of nitrogenation and fluorination on the structural, electronic, and optical properties of MgO monolayers through detailed calculations.
  • It confirms the stability of MgO as a two-dimensional (2D) material and notes that full chemical functionalization alters its structure and slightly decreases chemical stability.
  • The findings indicate that nitrogenation leads to metallization, while fluorination results in a significant reduction of the energy band gap, enhancing the material's optical absorption, which could improve its use in nano-devices.

Article Abstract

In this paper, we present a detailed investigation of the structural, electronic, and optical properties of pristine, nitrogenated, and fluorinated MgO monolayers using calculations. The two dimensional (2D) material stability is confirmed by the phonon dispersion curves and binding energies. Full functionalization causes notable changes in the monolayer structure and slightly reduces the chemical stability. The simulations predict that the MgO single layer is an indirect semiconductor with an energy gap of 3.481 (4.693) eV as determined by the GGA-PBE (HSE06) functional. The electronic structure of the MgO monolayer exhibits high sensitivity to chemical functionalization. Specifically, nitrogenation induces metallization of the MgO monolayer, while an indirect-direct band gap transition and band gap reduction of 81.34 (59.96)% are achieved by means of fluorination. Consequently, the functionalized single layers display strong optical absorption in the infrared and visible regimes. The results suggest that full nitrogenation and fluorination may be a quite effective approach to enhance the optoelectronic properties of the MgO monolayer for application in nano-devices.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9057461PMC
http://dx.doi.org/10.1039/d0ra05030jDOI Listing

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