Area of research
Renewable Energy, Sustainability and the Environment · Materials Chemistry
Research interest
Research interests include Advanced Photocatalysis Techniques, Supercapacitor Materials and Fabrication, Advancements in Battery Materials, and Magnetic Properties and Synthesis of Ferrites.
Fabrication of MoO3 Nanowires/MXene@CC hybrid as highly conductive and flexible electrode for next-generation supercapacitors applications
Ag-doped nickel ferrites and their composite with rGO: Synthesis, characterization, and solar light induced degradation of coloured and colourless effluents
Facile fabrication of SnO2 / MoS2 / rGO ternary composite for solar light-mediated photocatalysis for water remediation
Synthesis of 2D material based Bi2O3/MXene nanohybrids and their applications for the removal of industrial effluents
Green nickel/nickel oxide nanoparticles for prospective antibacterial and environmental remediation applications
Fabrication of reduced Graphene Oxide supported Gd3+ doped V2O5 nanorod arrays for superior photocatalytic and antibacterial activities
Nanostructured V2O5 and its nanohybrid with MXene as an efficient electrode material for electrochemical capacitor applications
Synthesis of sponge like Gd3+ doped vanadium oxide/2D MXene composites for improved degradation of industrial effluents and pathogens
Visible light active Cu-doped iron oxide for photocatalytic treatment of methylene blue
Manganese spinel ferrite-reduced graphene oxides nanocomposites for enhanced solar irradiated catalytic studies
Fabrication of NiO/SnO <sub>2</sub> heterojunction based photocatalyst for efficient sunlight degradation of organic dyes
CuxNi1-xO nanostructures and their nanocomposites with reduced graphene oxide: Synthesis, characterization, and photocatalytic applications
Ternary hybrid of polyaniline-alanine-reduced graphene oxide for electrochemical sensing of heavy metal ions
Fabrication of GdFO3-Carbon nanotubes nanocomposites for enhanced photocatalytic applications