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January 1, 2025International Journal of Energy ResearchOpen Access

Numerical Simulation to Achieve High Efficiency in CuTlSe2–Based Photosensor and Solar Cell

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Authors

MHMd. Nahid HasanMEMd. Islahur Rahman EbonJHJaker Hossain

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Overview

Numerical simulation indicates enhanced power conversion efficiency and responsivity in CuTlSe2-based structures, highlighting their dual-function capability.

Key Points

  • The optimized device achieves a power conversion efficiency of 31% with a germanium sulfide layer, greatly exceeding 22.97% without it.
  • Responsivity peaks at 0.78 A/W and detectivity reaches 2 × 10⁵ Jones, showcasing the device's effectiveness in light detection.
  • Numerical investigation using SCAPS-1D software relied on material parameters from literature and experimental studies.
  • These findings emphasize the potential for advanced dual-function photovoltaic and photosensing applications using CuTlSe2.

Cite This Study

Hasan et al. (2025) studied this question.

synapsesocial.com/papers/68af5d5dad7bf08b1eae056fhttps://doi.org/10.1155/er/4967875
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