Area of research
Biomedical Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Plasmonic and Surface Plasmon Research, Gold and Silver Nanoparticles Synthesis and Applications, Optical Coatings and Gratings, and Electrochemical Analysis and Applications.
Incorporating deep learning into smartphone-assisted sensing platform based on N, B-CDs for quantitative visual detection of silver ion
Integration of two-dimensional materials based photodetectors for on-chip applications
Enhanced third-harmonic generation in Si-compatible epsilon-near-zero indium tin oxide nanolayers
Comparative Study of Second-Harmonic Generation from Epsilon-Near-Zero Indium Tin Oxide and Titanium Nitride Nanolayers Excited in the Near-Infrared Spectral Range
CAREER: Causal Discovery: Methodology Driven by Practice
Collaborative Research: III: Small: Towards Well-Rounded Graph Retrieval for Retrieval-Augmented Generation
Collaborative Research: CyberTraining: Implementation: Medium: AI4EDU: Cloud Infrastructure-Enabled Training for AI in Educational Research and Assessment
CAREER: Exact Optimal and Data-Adaptive Algorithms and Tools for Differential Privacy
Collaborative Research: SCALE MoDL: Adaptivity of Deep Neural Networks
SAI-R: A Community-Centered Decision-Making Framework for Microgrid Deployment
CAREER: Exact Optimal and Data-Adaptive Algorithms and Tools for Differential Privacy
Collaborative Research: CPS: Medium: RUI: Cooperative AI Inferencein Vehicular Edge Networks for Advanced Driver-Assistance Systems
Collaborative Research: SCALE MoDL: Adaptivity of Deep Neural Networks
RI: Small: Towards Optimal and Adaptive Reinforcement Learning with Offline Data and Limited Adaptivity
Collaborative Research: CNS Core: Small: AirEdge: Robust Airborne Wireless Edge Computing Network using Swarming UAVs
Collaborative Research: P2C2--Winter Climate Anomalies across North America: Benchmarking Instrumental Trends and Model Projections with High Resolution Paleoclimatology
Collaborative Research: In-Situ Three-Dimensional Diffraction and High-Resolution Electron Microscopy Study of Modulated Martensites
NeTS: Small: Collaborative Research: Towards Reliable, Energy-Efficient, and Secure Vehicular Networks
Multiscale Genomic Imaging Informatics
EAGER: Topology Design in Socio-Temporal Evolving Wireless Networks
Multiscale Genomic Imaging Informatics
Computational Study for Optimizing Microstructures and Properties of Polymer-Matrix Magnetostrictive Composite Materials
NeTS:Small:Collaborative Research: An Integrated Environment-Independent Approach to Topology Control in Wireless Ad Hoc Networks
SGER: Developing a New Experimental Technique for Quantitative Nanotwin Microstructure Characterization by Using In-Situ Diffraction
Symposium: Domain Microstructures and Mechanisms for Advanced Properties in Phase Transforming Materials; Pittsburgh, PA; October 25-29, 2009
Symposium: Domain Microstructures and Mechanisms for Advanced Properties in Phase Transforming Materials; Pittsburgh, PA; October 25-29, 2009
SGER: Developing a New Experimental Technique for Quantitative Nanotwin Microstructure Characterization by Using In-Situ Diffraction
Computational Study for Optimizing Microstructures and Properties of Polymer-Matrix Magnetostrictive Composite Materials