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January 16, 2026Applied Physics Letters0 citations

Enhanced photocurrent and responsivity of Bi2O2Se nanosheet near-infrared photodetector by in situ surface growth of Te nanowires

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GWGuangcan WangSGSiying GaoYSYinghui Sun

Key Points

  • The study aims to enhance the performance of near-infrared photodetectors by using a Bi2O2Se/Te heterojunction.
  • Utilized low-temperature chemical vapor deposition
  • Achieved in situ surface growth of Te nanowires on Bi2O2Se nanosheets
  • Created a van der Waals interface to improve electron transfer
  • Achieved a photocurrent enhancement of 1.12 μA
  • Demonstrated a responsivity of 50 A/W
  • Measured a fast response speed of 32/>168 ms

Abstract

The intrinsically weak optical absorption and limited photocarrier separation of atomically thin two-dimensional (2D) materials often limit the photodetector performance. Here, we report an in situ surface growth strategy for preparing a Bi2O2Se/Te heterojunction via a low-temperature chemical vapor deposition method. One-dimensional Te nanowires directly grow on 2D Bi2O2Se nanosheets, forming a clean van der Waals interface and enhancing optical absorption capacity. The Bi2O2Se/Te heterostructure exhibits excellent optoelectronic performance, including an enhanced photocurrent of 1.12 μA, a high responsivity of 50 A/W, and a fast response speed of 32/168 ms. The enhanced photocurrent and responsivity arise from the efficient electron injection from Te to Bi2O2Se, and hole trapping at the heterointerface. This work demonstrates a non-destructive approach for preparing high-quality heterojunctions and provides an effective pathway for next-generation high-performance near-infrared photodetectors.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/6969d4dc940543b977709ceahttps://doi.org/10.1063/5.0311580
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