Dr.Mohamad Mohsen Momeni

Dr.Mohamad Mohsen Momeni

mm.momeni@iut.ac.ir
Office
Department of Chemistry, Isfahan University of Technology, Isfahan 8415683111, Iran
Phone
+98 311 3912237
Fax
+98 311 3912350
Positions
Associate Professor of physical chemistry
Research Interests
Surface Engineering
Corrosion & Coating
Nanomaterial and Nanochemistry
Photochemistry and photoelectrochemistry
Dye sensitized solar cells
Microbial fuel cells
Wastewater Treatment
Electroplating and Electroless coatings
Anodizing
Photovoltaics
Battery and supercapacitor
Metal and Alloy Plating
Photo-supercapacitor
type: Journal
Title Conference / Journal Date
Triazine-based covalent organic frameworks/polypyrrole hybrid as a high-performance electrode material of supercapacitors JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS
Enhanced supercapacitive behavior of triazine-based covalent organic framework hybridized with WO3 and carbon nanotubes Results in Engineering
Photoresponsive MoS2 Se PPy electrodes for flexible supercapacitors with self charging capability under light Scientific Reports
Illumination-boosted capacitance with NiFe2O4: design and performance of symmetric and asymmetric photo-powered supercapacitors with self-generated voltage Journal of Materials Chemistry A
Unveiling the role of electrode architecture and illumination direction in heterojunction photosupercapacitors performance and charge storage mechanism Journal of Materials Chemistry A
Architectural design of bilayer metal-organic Frameworks on nanotubes for photo-supercapacitor applications CHEMICAL ENGINEERING JOURNAL
All-solid-state flexible symmetric light-driven supercapacitor based on indium oxide-modified carbon nanotube bifunctional photoelectrodes ELECTROCHIMICA ACTA
New photo-assisted charging supercapacitors using WS2-polyaniline photoelectrodes produced by the electropolymerization method JOURNAL OF POWER SOURCES
A high-performance supercapacitor electrode based on Zn/V co-doped NiMoO4: a cation-cation doping strategy Journal of Materials Chemistry A
Photo-chargeable asymmetric supercapacitors based on FeVO4 dual-function photoelectrodes: A new energy harvesting and storage integrated device CHEMICAL ENGINEERING JOURNAL