| Authors | فروزان صمیمی,مریم غیاثیان آرانی,مسعود صلواتی,Forat H. Alsultany,Hadil Hussain Hamza |
| Journal | International Journal of Hydrogen Energy |
| Page number | 150481 |
| Volume number | 157 |
| IF | 8.3 |
| Paper Type | Full Paper |
| Published At | 2025-07-17 |
| Journal Grade | Scientific - research |
| Journal Type | Electronic |
| Journal Country | Iran, Islamic Republic Of |
| Journal Index | JCR ,SCOPUS |
| Keywords | Cu3Mo2O9 Nanostructures Graphene oxide Energy storage Electrochemistry Morphology |
|---|
Abstract
Cu3Mo2O9 was synthesized through hydrothermal method in the existence of bis(acetylacetanato) propylene
diamine (H2acacpn) Schiff-base ligand as a capping agent. Effect of amount of ligand on the morphology and size
uniformity was investigated to optimize ideal sample as an electrode material. Also, Cu3Mo2O9-based composites
designed in the presence of graphene oxide (GO) and graphitic carbon nitride (g-C3N4), separately. The
microstrain, porosity and magnetic properties of samples compared to achieved optimized electrode materials.
Electrochemical hydrogen storage capacity of carbonous composites compared with pristine Cu3Mo2O9 electrode
in 2.0 M KOH electrolyte and applying 1 mA constant current. Results show the increasing in the discharge
capacity by applying GO as additive in the composite texture of Cu3Mo2O9. So, maximum discharge capacity
reached to 1200 mA h/g for GO based Cu3Mo2O9 composites. However, pristine Cu3Mo2O9 presents 560 mA h/g
discharge capacity. The g-C3N4 based composites cannot show developed hydrogen storage discharge capacity
(400 mA h/g) due to blocking active sites of Cu3Mo2O9 nanoparticles.