Area of research
Spectroscopy · Cell Biology
Research interest
Research interests include Microtubule and mitosis dynamics, Electrochemical sensors and biosensors, Genomics and Chromatin Dynamics, and Mass Spectrometry Techniques and Applications.
CAREER: Designing Next-Generation Thermal User Interfaces for Multisensory VR Experiences
Collaborative Research & GOALI: Direct-Fed Ethanol Metal-Supported Solid Oxide Fuel Cells
Collaborative Research: Template-Free Manufacturing of Regular Microstructures by Ribbing-Enhanced Roll Coating
Green chemistry degradation of cotton waste for circular economy textiles
SCC-PG: Pilot Study and Workshop For Enhancing Rural-to-Urban Disaster Resilience by Integrating Social, Spatial and Digital Networks
Cybermanufacturing: Cloud-Based Incubation Ecosystem for EWOD Digital Microfluidics
Plasmonic Sensing Platform for Cancer Diagnosis
EAGER: Alternative Pathways for Biofuel formation from Furfuryl alcohol over Heterogeneous Catalysts
Support for the Advances in Catalysis Symposium in the 2015 International Advances in Functional Materials Conference; Stony Brook, NY
Large Drag Reductions with Superhydrophobic Surfaces Sustainable in Turbulent Boundary Layer Flows
Engineering Nano-Building Block Toolboxes for Programmable Self-Assembly of Nanostructures with Arbitary Shapes and Functions
A conformation-switching peptide probe for rapid, specific, quantitative and sensitive detection of amyloid aggregates
EAGER: Novel Hybrid Photovoltaic Mechanism using Ferroelectricity Assisted Charge Transport
A molecular "plug-and-play" platform for stabilization of proteins: revealing design principles of protein stabilization by insertion into a thermophilic protein
Self-Pumping Micro Fuel-Cell System with Scalable Monolithic Construction
NER: Exploration of DNA-Based Nanoscale Building Block (DNAnBLOCK) for Controllable and Scalable Fabrication of Active Nanostructures
Nanoscale Interdisciplinary Research Teams (NIRT): NanoTurf: Nano-engineered Low Flow Friction Surfaces
Microactuation by Electrical Control of Surface Tension
CAREER: Micromechanical Engineering and MEMS
Research on TEA Metal Vapor Lasers
Research on TEA Metal Vapor Lasers
Investigations of the Copper Vapor Laser Excited by a Fast Transverse Electrical Discharge
Investigations of the Copper Vapor Laser Excited By an Ultrafast Electrical Discharge
Investigations of the Copper Vapor Laser Excited By an Ultrafast Electrical Discharge