Your browser doesn't support javascript.
loading
Structural, electronic and optical properties of pristine and functionalized MgO monolayers: a first principles study.
Hoat, D M; Van On, Vo; Nguyen, Duy Khanh; Naseri, Mosayeb; Ponce-Pérez, R; Vu, Tuan V; Rivas-Silva, J F; Hieu, Nguyen N; Cocoletzi, Gregorio H.
  • Hoat DM; Institute of Theoretical and Applied Research, Duy Tan University Hanoi 100000 Vietnam dominhhoat@duytan.edu.vn.
  • Van On V; Faculty of Natural Sciences, Duy Tan University Da Nang 550000 Vietnam.
  • Nguyen DK; Group of Computational Physics and Simulation of Advanced Materials, Institute of Applied Technology, Thu Dau Mot University Binh Duong Province Vietnam onvv@tdmu.edu.vn nguyenduykhanh@tdmu.edu.vn.
  • Naseri M; Group of Computational Physics and Simulation of Advanced Materials, Institute of Applied Technology, Thu Dau Mot University Binh Duong Province Vietnam onvv@tdmu.edu.vn nguyenduykhanh@tdmu.edu.vn.
  • Ponce-Pérez R; Department of Physics, Kermanshah Branch, Islamic Azad University P.O. Box 6718997551 Kermanshah Iran m.naseri@iauksh.ac.ir.
  • Vu TV; Universidad Nacional Autónoma de México, Centro de Nanociencias y Nanotecnología Apartado Postal 14 Ensenada Baja California Código Postal 22800 México rponce@cnyn.unam.mx.
  • Rivas-Silva JF; Division of Computational Physics, Institute for Computational Science, Ton Duc Thang University Ho Chi Minh City Vietnam vuvantuan@tdtu.edu.vn.
  • Hieu NN; Faculty of Electrical & Electronics Engineering, Ton Duc Thang University Ho Chi Minh City Vietnam.
  • Cocoletzi GH; Benemérita Universidad Autónoma de Puebla, Instituto de Física Apartado Postal J-48 Puebla 72570 Mexico rivas@ifuap.buap.mx cocoletz@ifuap.buap.mx.
RSC Adv ; 10(66): 40411-40420, 2020 Nov 02.
Article en En | MEDLINE | ID: mdl-35520824
ABSTRACT
In this paper, we present a detailed investigation of the structural, electronic, and optical properties of pristine, nitrogenated, and fluorinated MgO monolayers using ab initio 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.