Area of research
Organic Chemistry · Materials Chemistry
Research interest
Research interests include Advanced Polymer Synthesis and Characterization, Carbon and Quantum Dots Applications, Supercapacitor Materials and Fabrication, and Carbon Dioxide Capture Technologies.
Oxygen releasing patches based on carbohydrate polymer and protein hydrogels for diabetic wound healing: A review
Carbon quantum initiators enabled direct laser writing: A technique for fabrication of dielectric, all-carbon chiral metasurfaces
A review on graphene quantum dots, an emerging luminescent carbon nanolights: Healthcare and Environmental applications
Photoluminescence properties of silk–carbon quantum dots composites
3D-printed bioresorbable poly(lactic-co-glycolic acid) and quantum-dot nanocomposites: Scaffolds for enhanced bone mineralization and inbuilt co-monitoring.
<scp>3D‐printed polymer</scp> nanocomposites with carbon quantum dots for enhanced properties and in situ monitoring of cardiovascular stents
Additive manufacturing of highly fluorescent organic 3D-metastructures at sub-wavelength resolution
3D printed nanocomposites for tailored cardiovascular tissue constructs: A minireview
Bioresorbable poly(lactic acid) and organic quantum dot-based nanocomposites: luminescent scaffolds for enhanced osteogenesis and real-time monitoring
Additive-Free All-Carbon Composite: A Two-Photon Material System for Nanopatterning of Fluorescent Sub-Wavelength Structures.
Hybrid Ni/NiO composite with N-doped activated carbon from waste cauliflower leaves: A sustainable bifunctional electrocatalyst for efficient water splitting
Two-photon active nucleus-targeting carbon dots: enhanced ROS generation and photodynamic therapy for oral cancer
Two-photon active nucleus-targeting carbon dots: enhanced ROS generation and photodynamic therapy for oral cancer.
Metal-based nanomaterials for efficient CO2 electroreduction: Recent advances in mechanism, material design and selectivity
Ultrafine Ni-Based Nanomaterials on Hierarchically Porous Carbon from Biomass: An Efficient Bifunctional Electrocatalyst for Water Splitting
Carbon quantum dot-based composites for energy storage and electrocatalysis: Mechanism, applications and future prospects
Hybrid Ni/NiO composite with N-doped activated carbon from waste cauliflower leaves: A sustainable bifunctional electrocatalyst for efficient water splitting
3D printing of biopolymer nanocomposites for tissue engineering: Nanomaterials, processing and structure-function relation
High efficiency supercapacitor derived from biomass based carbon dots and reduced graphene oxide composite
Interactions at scaffold interfaces: Effect of surface chemistry, structural attributes and bioaffinity
Ni- and P-doped carbon from waste biomass: A sustainable multifunctional electrode for oxygen reduction, oxygen evolution and hydrogen evolution reactions
High performance hybrid supercapacitor based on doped zucchini-derived carbon dots and graphene
Excitation-independent carbon dot probes for exogenous and endogenous Fe3+ sensing in living cells: Fluorescence lifetime and sensing mechanism
Aerogel from fruit biowaste produces ultracapacitors with high energy density and stability
Conjugated carbon quantum dots: Potent nano-antibiotic for intracellular pathogens
Interactions at scaffold interfaces: Effect of surface chemistry, structural attributes and bioaffinity.
Iodine doped composite with biomass carbon dots and reduced graphene oxide: a versatile bifunctional electrode for energy storage and oxygen reduction reaction
Doping reduced graphene oxide and graphitic carbon nitride hybrid for dual functionality: High performance supercapacitance and hydrogen evolution reaction
Conjugated carbon quantum dots: Potent nano-antibiotic for intracellular pathogens.
Non-enzymatic multispecies sensing of key wine attributes with nickel nanoparticles on N-doped graphene composite