PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
May 7, 2026Journal of the American Ceramic Society0 citations

Unveiling the Multifunctional Features of Cs 2 LiMoX 6 (X = Cl and Br) for Green Energy Applications: A DFT Study

View Full Paper
IRIbad Ur RehmanAAAli B. M. AliEKEjaz Ahmad Khera

Key Points

  • This research aims to investigate the properties of Cs2LiMoX6 materials for energy applications.
  • Utilized density functional theory to analyze physical properties.
  • Studied electronic and optical features using Tran Blaha-modified Beche Johnson.
  • Calculated thermoelectric parameters with Boltztrap and WIEN2K codes.
  • Cs2LiMoCl6 band gaps of 3.45 eV (spin-down) and 2.42 eV (spin-up).
  • Cs2LiMoBr6 band gaps of 3.13 eV (spin-down) and 1.34 eV (spin-up).
  • Both materials exhibit potential for optoelectronic applications due to UV light absorption.

Abstract

ABSTRACT Double‐perovskite halides are believed to satisfy the requirements for resolving energy scarcity concerns and have the potential to be beneficial materials for the production of renewable energy. Density functional theory modeling was used to analyze the physical properties of Cs 2 LiMoX 6 (X = Cl, Br), with electronic and optical features studied via Tran Blaha‐modified Beche Johnson (TB‐mBJ). Spin‐resolved band structure and density of states confirmed their semiconductor nature. Cs 2 LiMoCl 6 exhibited band gaps of 3.45 eV (spin‐down) and 2.42 eV (spin‐up), while Cs 2 LiMoBr 6 had band gaps of 3.13 eV (spin‐down) and 1.34 eV (spin‐up). The stability of the studied composites was shown by their low ground state energy, elastic constants, and tolerance factor analyses. Both Poisson's and Pugh's ratios indicated that the materials are brittle. The materials absorbed light in the ultraviolet range, specifically from 212 to 327 nm for Cs 2 LiMoCl 6 and from 171 to 385 nm for Cs 2 LiMoBr 6 , indicating that they could be useful for optoelectronic applications. The thermoelectric parameters as a function of temperature were calculated using the Boltztrap code, which has been integrated with the WIEN2K code. At 800 K, the thermoelectric figure of merit ( zT ) values were 0.75 for Cs 2 LiMoCl 6 and 0.86 for Cs 2 LiMoBr 6 , demonstrating their potential for high‐temperature thermoelectric applications.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Rehman et al. (2026) studied this question.

synapsesocial.com/papers/69fbefef164b5133a91a41d4https://doi.org/10.1111/jace.70804
Ask AI
Helpful
Bookmark
Share
View Full Paper