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Improved Carrier Separation and Recombination by Ferroelectric Polarization in the CuBiP 2 Se 6 /C 2 N Heterostructure: A Nonadiabatic Molecular Dynamics Study.

Xing-Xing JiangJieyao TanDongyu LiuYexin FengKe-Qiu ChenRun LongAndrey S Vasenko
Published in: The journal of physical chemistry letters (2024)
The rapid recombination of photogenerated carriers heavily restricts the photocatalytic efficiency. Here, we propose a new strategy to improve catalytic efficiency based on the ferroelectric van der Waals heterostructure (CuBiP 2 Se 6 /C 2 N). Combining density functional theory and the nonadiabatic molecular dynamics (NAMD) method, we have systematically analyzed the ground-state properties and carrier dynamics images in the CuBiP 2 Se 6 /C 2 N heterostructure. Our calculations showed that the ferroelectric polarization of CuBiP 2 Se 6 provides the internal driving force for the photogenerated carriers separation. NAMD results demonstrate that the excited-state carrier transfer and recombination processes in the CuBiP 2 Se 6 /C 2 N are consistent with a type II mechanism. Meanwhile, constructing the ferroelectric heterostructure can effectively prolong the carrier lifetime, from ∼65.98 to ∼124.54 ps. Moreover, the high quantum efficiency and tunable band edge positions mean that the CuBiP 2 Se 6 /C 2 N heterostructure is an excellent potential candidate material for photocatalytic water splitting.
Keyphrases
  • molecular dynamics
  • density functional theory
  • dna damage
  • dna repair
  • mass spectrometry
  • reduced graphene oxide
  • climate change
  • machine learning
  • oxidative stress
  • human health
  • crystal structure