Area of research
Biomedical Engineering · History and Philosophy of Science
Research interest
Research interests include Plasmonic and Surface Plasmon Research, Academic Writing and Publishing, Gold and Silver Nanoparticles Synthesis and Applications, and Academic Publishing and Open Access.
Nanofabrication for Nanophotonics
Voices of Nanomedicine: Blueprint Guidelines for Collaboration in Addressing Global Unmet Medical Needs
A soil-inspired dynamically responsive chemical system for microbial modulation
Thermal‐Disrupting Interface Mitigates Intercellular Cohesion Loss for Accurate Topical Antibacterial Therapy
Creation of Single-Photon Emitters in WSe<sub>2</sub> Monolayers Using Nanometer-Sized Gold Tips
Graphene Wrinkles Enable Spatially Defined Chemistry
Stretchable Superhydrophobicity from Monolithic, Three-Dimensional Hierarchical Wrinkles
Lasing action in strongly coupled plasmonic nanocavity arrays
Nanoscale Coronas: Surface Chemistry and Reactivity on Particle Scaffolds
Designer Photonic Lattices and Multilayer Structures that support Bound Optical Modes and Electrically-driven Excitation
Photonic Moire Nanostructures for Scalable Fabrication of Quantum Structures
Symmetry Breaking in Non-Hermitian Plasmonic Lattices
Convergence: RAISE: Auto-regulatory Scaffolds for Directed Evolution of Non-living Functional Materials
Correlative Tools for in Situ Analysis of Single Nanoparticles and their Ligands
OP: Coherence and Energy Transfer Processes in Lattice Plasmon Lasers
Nanoscale Curvature Effects on the Properties of Anisotropic Nanomaterials
Monolithic Nanofabrication: A Bottom-up Approach for Manufacturing Nanotextured Surfaces
Plasmon-Exciton Energy Transfer in Metal Nanocavities
Designing Multi-scale Nanomaterials with Structural Control over Three Orders of Magnitude
Shrinkable and Stretchable NanoManufacturing
Broadband, Quasi-Crystalline, and Low-Symmetry Plasmonics
2010 Noble Metal Nanoparticles: Preparation, Modeling And Applications GRC
Large-area Chemical, Biological, and Materials NanoManufacturing
Multi-Scale Active Nanostructures: Arrays of Anisotropic Holes and Particles
SGER: Designing Active Nanostructures from Passive Metallic Films
CAREER: Soft and Hard Chemical Routes to Nanoscale Metal Chalcogenide Materials
NUE: Unconventional Patterning at the Nanoscale: Bottom-up Synthesis Meets Top-Down Fabrication