Area of research
Analytical Chemistry · Molecular Biology
Research interest
Research interests include Materials science, Nanotechnology, Terahertz radiation, Computer science, Carbon nanotube, and Flexibility (engineering).
Carbon-nanomaterial-enabled terahertz technology
Sustainable Materials Enabled Terahertz Functional Devices
Metal-organic frameworks (MOFs) and covalent organic frameworks (COFs)-based prototyping of integrated sensing devices for robust analysis
Room-temperature high-precision printing of flexible wireless electronics based on MXene inks
A deep learning approach to improving spectral analysis of fruit quality under interseason variation
Engineering squandered plant protein into eco-friendly triboelectric films for highly efficient energy harvesting
Detect and attribute the extreme maize yield losses based on spatio-temporal deep learning
Recent advances in determination applications of emerging films based on nanomaterials
High-sensitivity detection of trace imidacloprid and tetracycline hydrochloride by multi-frequency resonance metamaterials
Wireless Technologies for Energy Harvesting and Transmission for Ambient Self-Powered Systems
Plant-protein-enabled biodegradable triboelectric nanogenerator for sustainable agriculture
Ultrahigh-Sensitivity Molecular Sensing with Carbon Nanotube Terahertz Metamaterials
Monte Carlo: A flexible and accurate technique for modeling light transport in food and agricultural products
Ultrathin and ultradense aligned carbon nanotube membranes for water purification with enhanced rejection performance
Multi-objective optimization for sustainable renewable jet fuel production: A case study of corn stover based supply chain system in Midwestern U.S.
In-field detection of multiple pathogenic bacteria in food products using a portable fluorescent biosensing system