| Authors | مریم غیاثیان آرانی,اعظم سبحانی |
| Journal | Materials Today Communications |
| Page number | 116029 |
| Volume number | 56 |
| IF | 4.9 |
| Paper Type | Full Paper |
| Published At | 2026-08-30 |
| Journal Grade | Scientific - research |
| Journal Type | Electronic |
| Journal Country | Iran, Islamic Republic Of |
| Journal Index | JCR ,SCOPUS |
| Keywords | Sol, gel Saccharide Hydrothermal Hydrogen storage MgMn2O4 Mg2MnO4 Composite |
|---|
Abstract
MgMn2O4/Mg2MnO4 composite electrode materials were synthesized through a sol-gel route in the presence of
saccharides, with different precursor sources employed to tailor the final products. The choice of starting ma
terials significantly influenced the phase purity, crystal structure, and microstrain of the synthesized samples.
The impact of these parameters on the morphology, optical properties, and electrochemical performance was
systematically examined. In parallel, magnesium manganite was also synthesized using hydrothermal and co-
precipitation methods. Surfactant-free hydrothermal synthesis enabled the formation of MgMn2O4 nano
structures, and the effects of reaction temperature and time were evaluated. Among the sol-gel-prepared samples,
the best electrochemical performances were achieved for the samples synthesized using sucrose and glucose
fuels, delivering maximum specific capacities of 279 mAhg 1 and 374 mAhg⁻¹ , respectively. These findings
demonstrate that MgMn2O4/Mg2MnO4 materials are promising candidates for energy storage applications.