Area of research
Biomedical Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research focused on Porphyrin and Graphene, with related work in Carbon nanotube, Nanocomposite, Covalent bond. Notable publications include 'Covalent functionalization of reduced graphene oxide with porphyrin by means of diazonium chemistry for nonlinear optical performance', 'Increased optical nonlinearities of graphene nanohybrids covalently functionalized by axially-coordinated porphyrins', and 'Facile hydrothermal synthesis and optical limiting properties of TiO2-reduced graphene oxide nanocomposites'.
Synergistic promoted nonlinear optical effects in polyaniline nanohybrids covalently functionalized with tin porphyrin
Enhanced optical limiting and hydrogen evolution of graphene oxide nanohybrids covalently functionalized by covalent organic polymer based on porphyrin
Highly broadband NLO response of acceptor–donor–acceptor materials with a planar conformation
Boosted charge transfer in porphyrin and zinc phthalocyanine co-functionalized graphene oxide nanohybrids toward improved optical limiting and H2 evolution
Longitudinal magnetization superoscillation enabled by high-order azimuthally polarized Laguerre-Gaussian vortex modes
Butterfly and <scp>Nest‐Shaped</scp> Tp*‐<scp>W‐Cu‐S</scp> Cluster Monomers and Dimers with Hexamethylenetetramine as Ligand: <scp>Anion‐Dependent</scp> Structures and Nonlinear Optical Properties
Covalent functionalization of reduced graphene oxide with porphyrin by means of diazonium chemistry for nonlinear optical performance
TiO<sub>2</sub>–multi-walled carbon nanotube nanocomposites: hydrothermal synthesis and temporally-dependent optical properties
Assembly of [Tp*WS<sub>3</sub>Cu<sub>2</sub>]-Supported Coordination Polymers from Linkers with a Unique μ-Pyridyl Bridging Mode and Their Enhanced Third-Order Nonlinear Optical Performances
Facile hydrothermal synthesis and optical limiting properties of TiO2-reduced graphene oxide nanocomposites
Multi-walled carbon nanotubes covalently functionalized by axially coordinated metal-porphyrins: Facile syntheses and temporally dependent optical performance
A 1,3-dipolar cycloaddition protocol to porphyrin-functionalized reduced graphene oxide with a push-pull motif
Facile Synthesis and Enhanced Nonlinear Optical Properties of Porphyrin‐Functionalized Multi‐Walled Carbon Nanotubes
Cooperative enhancement of optical nonlinearities in a porphyrin derivative bearing a pyrimidine chromophore at the periphery
Increased optical nonlinearities of graphene nanohybrids covalently functionalized by axially-coordinated porphyrins