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Z-scheme Al 2 SeTe/GaSe and Al 2 SeTe/InS van der Waals heterostructures for photocatalytic water splitting.

Shaoying GuoZhou CuiYanhui ZouBaisheng Sa
Published in: Physical chemistry chemical physics : PCCP (2024)
Designing Z-scheme van der Waals (vdW) heterostructured photocatalysts is a promising strategy for developing highly efficient overall water splitting. Herein, by employing density functional theory calculations, we systematically investigated the stability, electronic structures, photocatalytic and optical properties of Al 2 SeTe, GaSe, and InS monolayers and their corresponding vdW heterostructures. Interestingly, electronic structures show that all vdW heterostructures have direct band gaps, which is conducive to the transition of electrons from the valence band to the conduction band. Notably, Al 2 TeSe/GaSe and Al 2 TeSe/InS vdW heterostructures possess large overpotentials for Z-scheme photocatalytic water splitting, as proved by the results of band edge positions and band structure bending. Moreover, these vdW heterostructures exhibit good optical absorption in ultraviolet and visible light regions. We believe that our findings will open a new avenue for the modulation and development of Al 2 TeSe/GaSe and Al 2 TeSe/InS vdW heterostructures for photocatalytic water splitting.
Keyphrases
  • visible light
  • highly efficient
  • density functional theory
  • room temperature
  • high resolution
  • molecular dynamics
  • ionic liquid
  • monte carlo