Two-dimensional Sc2CCl2/XSe2(X=Mo, Pt) van der Waals heterojunctions: promising photocatalytic hydrogen evolution materials

  • Qionghui Zeng
  • , Liang Xu
  • , S. X. Xiong
  • , Ying Zhang
  • , Lei Cao
  • , Ji Tao
  • , Zhengquan Li
  • , Ling Ling Wang
  • , Kejun Dong

Research output: Contribution to journalArticlepeer-review

1 Citation (Scopus)

Abstract

In the field of photocatalysis, new heterojunction materials are increasingly explored to achieve efficient energy conversion and environmental catalysis under visible light and sunlight. This paper presents a study on two newly constructed two-dimensional van der Waals heterojunctions, Sc2CCl2/MoSe2 and Sc2CCl2/PtSe2, using density-functional theory. The study includes a systematic investigation of their geometrical structure, electronic properties, and optical properties. The results indicate that both heterojunctions are thermodynamically, kinetically, and mechanically stable. Additionally, Bader charge analysis reveals that both heterojunctions exhibit typical type II band properties. However, the band gap of the Sc2CCl2/MoSe2 heterojunction is only 1.18 eV, which is insufficient to completely cross the reduction and oxidation (REDOX) potential of 1.23 eV, whereas the band gap of Sc2CCl2/PtSe2 heterojunction is 1.49 eV, which is theoretically capable for water decomposition. The subsequent calculation of the Sc2CCl2/PtSe2 heterojunction demonstrate excellent hole carrier mobility and high efficiency light absorption in the visible light range, facilitating the separation of photogenerated electrons and holes. More importantly, Sc2CCl2/PtSe2 vdW type II heterojunction can achieve full water decomposition from pH 1 to pH 4, and its thermodynamic feasibility is confirmed by Gibbs free energy results. The aim of this study is to develop materials and analyses that will result in optoelectronic devices that are more efficient, stable, and sustainable.
Original languageEnglish
Article numbere202400304
Number of pages13
JournalChemPhysChem
Volume25
Issue number14
DOIs
Publication statusPublished - 2024

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

Keywords

  • First-principles calculations
  • Hydrogen
  • Photocatalyst
  • vdW heterostructure

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