رزومه


مریم غیاثیان

مریم غیاثیان

استادیار

دانشکده: پژوهشکده علوم و فناوری نانو

گروه: علوم و فناوری نانو

مقطع تحصیلی: دکترای تخصصی

رزومه
مریم غیاثیان

استادیار مریم غیاثیان

دانشکده: پژوهشکده علوم و فناوری نانو - گروه: علوم و فناوری نانو مقطع تحصیلی: دکترای تخصصی |

A comparative study on effect of g-C3N4 and GO as additives on Cu3Mo2O9-based nanocomposites as potential hydrogen storage material

نویسندگانفروزان صمیمی,مریم غیاثیان آرانی,مسعود صلواتی,Forat H. Alsultany,Hadil Hussain Hamza
نشریهInternational Journal of Hydrogen Energy
شماره صفحات150481
شماره مجلد157
ضریب تاثیر (IF)8.3
نوع مقالهFull Paper
تاریخ انتشار2025-07-17
رتبه نشریهعلمی - پژوهشی
نوع نشریهالکترونیکی
کشور محل چاپایران
نمایه نشریهJCR ,SCOPUS
کلید واژه هاCu3Mo2O9 Nanostructures Graphene oxide Energy storage Electrochemistry Morphology

چکیده مقاله

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.