Area of research
Biomedical Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Materials science, Nanoparticle, Azobenzene, Nanotechnology, Peptide, and Isomerization.
Light-induced tumor theranostics based on chemical-exfoliated borophene
Repression of Interlayer Recombination by Graphene Generates a Sensitive Nanostructured 2D vdW Heterostructure Based Photodetector
IDH1 Mutations Induce Organelle Defects Via Dysregulated Phospholipids
Optical Control of Nanoparticle Catalysis Influenced by Photoswitch Positioning in Hybrid Peptide Capping Ligands
Remote Optically Controlled Modulation of Catalytic Properties of Nanoparticles through Reconfiguration of the Inorganic/Organic Interface
Resonance Raman Probes for Organelle-Specific Labeling in Live Cells
Plasmon-enhanced two-photon-induced isomerization for highly-localized light-based actuation of inorganic/organic interfaces
Toward a modular multi-material nanoparticle synthesis and assembly strategy via bionanocombinatorics: bifunctional peptides for linking Au and Ag nanomaterials
Organelle specific imaging in live cells and immuno-labeling using resonance Raman probe
Optical Actuation of Inorganic/Organic Interfaces: Comparing Peptide-Azobenzene Ligand Reconfiguration on Gold and Silver Nanoparticles
Triggering nanoparticle surface ligand rearrangement via external stimuli: light-based actuation of biointerfaces
Comparative Study of Materials-Binding Peptide Interactions with Gold and Silver Surfaces and Nanostructures: A Thermodynamic Basis for Biological Selectivity of Inorganic Materials
Peptide-mediated synthesis of gold nanoparticles: effects of peptide sequence and nature of binding on physicochemical properties
Biomolecular Recognition Principles for Bionanocombinatorics: An Integrated Approach To Elucidate Enthalpic and Entropic Factors
Intense ultraviolet upconversion emission from water-dispersed colloidal YF<sub>3</sub>:Yb<sup>3+</sup>/Tm<sup>3+</sup>rhombic nanodisks
Photopatternable transparent conducting oxide nanoparticles for transparent electrodes
(α-NaYbF<sub>4</sub>:Tm<sup>3+</sup>)/CaF<sub>2</sub> Core/Shell Nanoparticles with Efficient Near-Infrared to Near-Infrared Upconversion for High-Contrast Deep Tissue Bioimaging