Unveiling the potential of XInH3 (X = Rb and Cs): A DFT study for solid state hydrogen storage applications

  • Ahmed, Bilal
  • Tahir, Muhammad Bilal
  • Sagir, Muhammad
  • Parveen, Amna
  • Abbas, Zeesham
  • 외 1명
Citations

WEB OF SCIENCE

32
Citations

SCOPUS

37

초록

Efficient hydrogen storage materials are essential for the advancement of sustainable energy solutions. This work employs density functional theory (DFT) to examine the capacity of XInH3 (X = Rb and Cs) as materials for storing hydrogen in solid-state. The crystal structures of RbInH3 and CsInH3, which both belong to the space group pm3m, with lattice parameters of 4.35 & Aring; and 4.44 & Aring;, respectively. The formation enthalpies of RbInH3 and CsInH3 are -4.29 eV/atom and -6.41 eV/atom, respectively, suggesting that they possess favorable thermodynamic stability. The gravimetric hydrogen storage capacities of RbInH3 and CsInH3 are 1.45 % and 1.18 % respectively. An examination of the electronic structure indicates the presence of metallic properties, characterized by the overlapping of the valence and conduction bands. The optical characteristics of RbInH3 and CsInH3 demonstrate substantial absorption in the ultraviolet (UV) region, with RbInH3 having a peak at 20.25 electron volts (eV) and CsInH3 at 16.92 eV. The mechanical properties demonstrate anisotropic behavior and imply brittle features. The evaluation also includes thermodynamic properties such as the Debye temperature and melting temperatures. These findings suggest that RbInH3 and CsInH3, with their favorable structural stability and ease of synthesis, could be integrated into current hydrogen storage technologies, offering a pathway for further optimization to enhance their practical applicability.

키워드

DFT simulationDebye temperatureThermodynamic propertiesCrystal structureELASTIC PROPERTIESHYDRIDES
제목
Unveiling the potential of XInH3 (X = Rb and Cs): A DFT study for solid state hydrogen storage applications
저자
Ahmed, BilalTahir, Muhammad BilalSagir, MuhammadParveen, AmnaAbbas, ZeeshamAl-Aiban, Khalid M.
DOI
10.1016/j.chemphys.2024.112441
발행일
2025-01
유형
Article
저널명
Chemical Physics
588