Area of research
Renewable Energy, Sustainability and the Environment · Organic Chemistry
Research interest
Research interests include Materials science, Supercapacitor, Nanocomposite, Photocatalysis, Electrode, and Methylene blue.
Magnetic properties of different phases iron oxide nanoparticles prepared by micro emulsion-hydrothermal method
A self-supporting Co(OH)F nanosquares with ion and electron conductive structure for high performance electrochemical energy storage
Phytoassisted synthesis of CuO and Ag–CuO nanocomposite, characterization, chemical sensing of ammonia, degradation of methylene blue
Boosting visible-light-driven photocatalytic H2 production by optimizing surface hydrogen desorption of NiS/CdS–P photocatalyst
Photocatalytic applications of A5-mPmH-Zr/CuTiO3 nanocomposite synthesized by simple hydrothermal method
Tripartite synergy: Photodegradation of congo red and bromothymol blue with concurrent bacterial photoinhibition using ZnCe/Bi2Mn2O6/rGO nanocomposites
RETRACTED: An innovative ZnO NbN composite cathodic electrode with large interfacial contact area for high performance supercapacitor
Hydrothermally synthesized binder-less ZnS/CdS on nickel foam as promising hybrid supercapacitor electrode materials
Nanoscale engineering of semiconductor photocatalysts boosting charge separation for solar-driven H <sub>2</sub> production: Recent advances and future perspective
FeSe2/TiO2 heterostructure as an efficient photocatalyst and their electrochemical energy storage applications
Correlation between Magnetic and Dielectric Response of CoFe2O4:Li1+/Zn2+ Nanopowders Having Improved Structural and Morphological Properties
A new binder-free ZnS-CuO microsphere: A battery-type electrode material for asymmetric supercapacitor
Synthesis of Zr–Fe2O3/In2O3 photocatalyst by novel hydrothermal method for highly selective photo inhibition of pathogens, pollutant degradation and DPPH stabilization
A new cadmium oxide (CdO) and copper selenide (CuSe) nanocomposite: An energy-efficient electrode for wide-voltage hybrid supercapacitors