Area of research
Electrical and Electronic Engineering · Bioengineering
Research interest
Research interests include Analytical Chemistry and Sensors, Electrochemical sensors and biosensors, Gas Sensing Nanomaterials and Sensors, and Advanced biosensing and bioanalysis techniques.
SkinAid: A Wirelessly Powered Smart Dressing Solution for Continuous Wound-Tracking Using Textile-Based Frequency Modulation
Biosensor for Monitoring Uric Acid in Wound and Its Proximity: A Potential Wound Diagnostic Tool
Enhanced thermoelectric properties of lightly Nb doped SrTiO<sub>3</sub> thin films
Continuous Monitoring of Wound Healing Using a Wearable Enzymatic Uric Acid Biosensor
Uricase Based Enzymatic Biosensor for Non‐invasive Detection of Uric Acid by Entrapment in PVA‐SbQ Polymer Matrix
From Cellular Cultures to Cellular Spheroids: Is Impedance Spectroscopy a Viable Tool for Monitoring Multicellular Spheroid (MCS) Drug Models?
EAGER: Enhancing plasmonic mode coupling in metal insulator metal structures
EAGER: Enhancing plasmonic mode coupling in metal insulator metal structures
REU Site: Wearable and Emerging technologies - Facilitating research Opportunities and Creating pathways for Underrepresented Students (WE-FOCUS) at FIU
PFI-TT: A Low-Cost Cortisol Sensor for Real-Time Stress Monitoring
I-Corps Team: Transdermal alcohol sensor system for monitoring blood alcohol content
I-Corps: Cortisense - A point of care sensor for measurement of stress
GOALI: Integrated Microwave Microneedle-Electrode System For Fine Scale Material and Device Characterization
Nanoengineered, Manufacturable, Ion-Implantation Seeded Silica Nanowires for Sensitive BioScreening
GOALI: Integrated Microwave Microneedle-Electrode System For Fine Scale Material and Device Characterization
Nanoengineered, Manufacturable, Ion-Implantation Seeded Silica Nanowires for Sensitive BioScreening
MRI: ACQUISITION OF DEEP REACTIVE ION ETCHING TOOL FOR INTERDISCIPLINARY RESEARCH AT THE UNIVERSITY OF SOUTH FLORIDA
SGER:Novel Concentric, Hollow Silicon Microneedle Array for Diagnostics and Therapeutics
NER: Effect of Morphology of Pd & NiFe Nanowires on Sensor Response
CAREER: Development of Bio-MEMS for determining cell structure using microfluidics and bio impedance