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April 24, 2026Langmuir4 citations

Comparative Study on Sensing Properties of the PdSe 2 –CdS Heterojunction and Pd-Modified PdSe 2 –CdS for Dissolved Gases in Transformer Oil Based on Density Functional Theory Calculations

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YGYingang GuiQYQianglong YangSLSiyuan Liu

Key Points

  • This research aims to evaluate the sensing properties of PdSe2-CdS heterojunction and its Pd-modified version for detecting dissolved gases in transformer oil.
  • Utilized first-principles density functional theory (DFT) calculations
  • Investigated adsorption interactions with multiple dissolved gas molecules (H2, CH4, C2H2, CO, C2H4, C2H6)
  • Compared gas-sensing response characteristics between PdSe2-CdS and Pd-PdSe2-CdS.
  • Pd-PdSe2-CdS shows significantly better gas-sensing response compared to PdSe2-CdS
  • Pd-PdSe2-CdS has an excellent adsorption performance for CO with a recovery time of 108.54 seconds at 298 K
  • Desorption time for gases decreases significantly at higher temperatures, enhancing sensor performance.

Abstract

The detection of dissolved gases in transformer oil is critical for the early identification and prevention of faults, thereby improving the operational safety of power systems. This work systematically investigates the adsorption interactions between the PdSe2-CdS heterojunction/PdSe2-CdS modified by Pd (Pd-PdSe2-CdS) and multiple dissolved gas molecules (H2, CH4, C2H2, CO, C2H4, C2H6) in transformer oil, employing comprehensive first-principles density functional theory (DFT) calculations. Among these two novel two-dimensional sensing materials, the gas-sensing response characteristics of Pd-PdSe2-CdS are significantly superior to those of the PdSe2-CdS heterostructure. Pd-PdSe2-CdS exhibits not only excellent adsorption performance for CO but also a favorable recovery time, with a recovery time of 108.54 s at 298 K. However, the desorption time shortens significantly as the temperature rises to 398 K. Pd-PdSe2-CdS can act as a heated sensor for CO in transformer oil. These insights offer valuable theoretical underpinnings for the design of advanced gas sensors suitable for real-time condition monitoring in electrical equipment.

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Cite This Study

Gui et al. (2026) studied this question.

synapsesocial.com/papers/69eb09c9553a5433e34b4224https://doi.org/10.1021/acs.langmuir.5c05476
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