Area of research
Electrical and Electronic Engineering · Renewable Energy, Sustainability and the Environment
Research interest
Research focused on Scintillator and Scintillation, with related work in Copper, Biocompatibility, MXenes. Notable publications include 'Nonoxidized MXene Quantum Dots Prepared by Microexplosion Method for Cancer Catalytic Therapy', 'Chemical-Combined Ball-Milling Synthesis of Fluorine-Free Porous MXene for High-Performance Lithium Ion Batteries', and 'Highly efficient flame retardant, flexible, and strong adhesive intumescent coating on polypropylene using hyperbranched polyamide'.
A DNA aptamer for trivalent lanthanide ions with low nanomolar affinity
Smartphone assisted paper strip-based colorimetric sensing of phosphate and copper ions utilizing bi-ligand intercalated cobalt-MOF as a dual functional nanozyme
Achieving a Record Scintillation Performance by Micro‐Doping a Heterovalent Magnetic Ion in Cs <sub>3</sub> Cu <sub>2</sub> I <sub>5</sub> Single‐Crystal
Prussian blue analogues of Ni–Co–MoS2 nanozymes with high peroxidase like activity for sensitive detection of glyphosate and copper
High‐Quality Cs<sub>3</sub>Cu<sub>2</sub>I<sub>5</sub> Single‐Crystal is a Fast‐Decaying Scintillator
Nonoxidized MXene Quantum Dots Prepared by Microexplosion Method for Cancer Catalytic Therapy
Chemical-Combined Ball-Milling Synthesis of Fluorine-Free Porous MXene for High-Performance Lithium Ion Batteries
Highly efficient flame retardant, flexible, and strong adhesive intumescent coating on polypropylene using hyperbranched polyamide