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Enhanced photoresponse and stability in graphene/silicon Schottky photodetectors modified with perovskite nanoparticles

  • Kashif Abbas
  • , Peirui Ji
  • , Muhammad Faizan Ameer
  • , Shuming Yang
  • Xi'an Jiaotong University

科研成果: 期刊稿件文章同行评审

9 引用 (Scopus)

摘要

Graphene/silicon Schottky junction has been exhibited for significant photodetection; however, it still has relatively low detectivity due to high dark current. To cope with the issue, CuGeO3 perovskite nanoparticles were analyzed by density functional theory and synthesized using a scalable and cost-effective autoclave method for the Graphene/silicon Schottky junction photodetector. Subsequently, a CuGeO3/Graphene/Silicon Schottky photodetector was fabricated, and its high-performance characteristics were systematically examined. The photodetector demonstrated an exceptional detectivity of 1.196 × 1013 Jones, maximum responsivity of 0.496 A/W, and a significant photocurrent of 3.4 mA at 405 nm wavelength at 3 reverse bias operating voltages. The device exhibited a remarkably low dark current of 1.379 × 10−8 A, suppressing dark current significantly as compared to conventional Gr/Si Schottky photodetectors. In addition, the photodetector showcased a stable response at 300 continuous working cycles, a fast rise time of 0.11 ms, and an ION/OFF ratio up to ∼105, demonstrating superior switching performance. Moreover, the highest external quantum efficiency achieved was 151.9 %, highlighting the excellent photon-to-electron conversion efficiency. These findings emphasize the potential of CuGeO3 perovskite nanoparticles for high performance and future advancements in optoelectronic devices.

源语言英语
期刊论文编号164485
期刊Applied Surface Science
714
DOI
出版状态已出版 - 30 12月 2025

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