Materials (Feb 2023)

Hydrogen Storage Performance of Mg/MgH<sub>2</sub> and Its Improvement Measures: Research Progress and Trends

  • Xinglin Yang,
  • Wenxuan Li,
  • Jiaqi Zhang,
  • Quanhui Hou

DOI
https://doi.org/10.3390/ma16041587
Journal volume & issue
Vol. 16, no. 4
p. 1587

Abstract

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Due to its high hydrogen storage efficiency and safety, Mg/MgH2 stands out from many solid hydrogen storage materials and is considered as one of the most promising solid hydrogen storage materials. However, thermodynamic/kinetic deficiencies of the performance of Mg/MgH2 limit its practical applications for which a series of improvements have been carried out by scholars. This paper summarizes, analyzes and organizes the current research status of the hydrogen storage performance of Mg/MgH2 and its improvement measures, discusses in detail the hot studies on improving the hydrogen storage performance of Mg/MgH2 (improvement measures, such as alloying treatment, nano-treatment and catalyst doping), and focuses on the discussion and in-depth analysis of the catalytic effects and mechanisms of various metal-based catalysts on the kinetic and cyclic performance of Mg/MgH2. Finally, the challenges and opportunities faced by Mg/MgH2 are discussed, and strategies to improve its hydrogen storage performance are proposed to provide ideas and help for the next research in Mg/MgH2 and the whole field of hydrogen storage.

Keywords