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Type-II Ga2SeTe/AlAs heterostructure: excellent optoelectronic properties for photocatalytic water splitting and solar cells

  • Gang Guo
  • , Yongcheng Chen
  • , Gencai Guo
  • , Ping Li
  • Hunan Institute of Technology
  • XiangTan University

Research output: Contribution to journalArticlepeer-review

26 Scopus citations

Abstract

Two-dimensional (2D) semiconductors have become a research hotspot in photovoltaic field because of their remarkable photoelectric properties. However, the rapid recombination of photogenerated charge carriers imposes a critical constraint on the optoelectronic efficiency. In this study, a type-II heterostructure consisting of Janus Ga2SeTe (Janus-Ga2SeTe) monolayer and AlAs monolayer with a double layer hexagonal structure (DLHS-AlAs) is systematically designed to enable efficient spatial separation of photogenerated carriers, ultimately enhancing optoelectronic performance as demonstrated by first-principles calculations. Our calculations indicate that Janus-Ga2SeTe/DLHS-AlAs heterostructure displays excellent stability and semiconducting character, showing a moderate bandgap and a distinct type-II band arrangement. It exhibits high visible-light absorption and water-splitting-compatible band alignment. Moreover, the system achieves notable solar-to-hydrogen conversion efficiency (26.64 %) and power conversion efficiency (18.75 %). Continuous bandgap control (0.67–1.75 eV) and reversible type-I/II switching are achieved via biaxial strain. Meanwhile, strain regulation (−2% to 2 %) optimizes light absorption while maintaining band positions suitable for water splitting, yielding a maximum STH efficiency of 36.06 % at 2 % strain. These results emphasize the material’s dual applicability in photocatalytic water splitting and solar cells.

Original languageEnglish
Article number114203
JournalSolar Energy
Volume304
DOIs
StatePublished - 15 Jan 2026

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

  • Biaxial strain
  • Optoelectronic properties
  • Power conversion efficiency
  • Solar-to-hydrogen efficiency

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