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May 9, 2026Modern Physics Letters B1 citations

Novel Stable High-Performance Electronic, Optical, and Thermoelectric Properties of 2D CdPS 3 Monolayer for Energy Applications

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MKMuhammad Amir KhanZUZahid UllahRKRajwali Khan

Key Points

  • This work aims to investigate the structural and electronic properties of 2D CdPS3 monolayer for energy applications.
  • Density functional theory was used with spin-polarized GGA-PBEsol.
  • The study focused on electronic, optical, and thermoelectric properties and their calculations at elevated temperatures.
  • The analysis involved exploring spin-resolved band structures and dielectric functions.
  • The semiconducting gap was found to be 2.7 eV, essential for charge transport.
  • ZT values for both spin states reached 1.1 at elevated temperatures.
  • Significant optical absorption in the ultraviolet range was observed, indicating potential for UV applications.

Abstract

In this work, we investigate the structural, electronic, optical, and thermoelectric properties using density functional theory within the spin-polarized GGA-PBEsol functional. The spin-resolved band structure, which reveals a significant semiconducting gap that is 2.7 eV, plays a crucial role in charge transport and optical transitions. Our analysis of the spin-resolved dielectric functions highlighted significant ultraviolet absorption, a broad spectrum of interband transitions, and minimal static dielectric screening. Optical activity remains unaffected by spin, as evidenced by the identical responses in both spin-up and spin-down states. Our study of thermoelectric transport concentrated on essential physical processes that greatly influence electrical conductivity, thermal transport at elevated temperatures, and the Seebeck coefficient. These processes include thermal smearing, phonon scattering, and bipolar conduction. Additionally, bipolar effects have been shown to reduce thermoelectric efficiency at higher temperatures, emphasizing the importance of accurate band-gap calculations for optimizing material performance in thermoelectric applications. The ZT values for spin up and down is 1.1 at elevated temperature The material's combination of optical and transport properties indicates its potential for use in UV optoelectronic devices and thermoelectric energy conversion, particularly in practical applications and future research.

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Cite This Study

Khan et al. (2026) studied this question.

synapsesocial.com/papers/69fed03cb9154b0b82877495https://doi.org/10.1142/s0217984926501496
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