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Stability, electronic, and optical properties of two-dimensional phosphoborane.

Dmitrii V SteglenkoNikolay V TkachenkoAlexander I BoldyrevRuslan M MinyaevVladimir I Minkin
Published in: Journal of computational chemistry (2020)
The structure and properties of two-dimensional phosphoborane sheets were computationally investigated using Density Functional Theory calculations. The calculated phonon spectrum and band structure point to dynamic stability and allowed characterization of the predicted two-dimensional material as a direct-gap semiconductor with a band gap of ~1.5 eV. The calculation of the optical properties showed that the two-dimensional material has a relatively small absorptivity coefficient. The parameters of the mechanical properties characterize the two-dimensional phosphoborane as a relatively soft material, similar to the monolayer of MoS2 . Assessment of thermal stability by the method of molecular dynamics indicates sufficient stability of the predicted material, which makes it possible to observe it experimentally.
Keyphrases
  • density functional theory
  • molecular dynamics
  • room temperature
  • computed tomography
  • quantum dots
  • mass spectrometry
  • magnetic resonance imaging
  • reduced graphene oxide