Area of research
Electrical and Electronic Engineering · Bioengineering
Research interest
Research interests include Materials science, Polyvinylidene fluoride, Polyaniline, Microelectromechanical systems, Computer science, and Electronic nose.
MEMS-based PANI@UiO-66 sensor for NH3 detection with rapid response and low limit
Optimization of SnO2-based MEMS sensor array for expeditious and precise categorization of meat types and freshness status
Enhancing E-Nose Performance via Metal-Oxide Based MEMS Sensor Arrays Optimization and Feature Alignment for Drug Classification
Humidity Sensing Using Polymers: A Critical Review of Current Technologies and Emerging Trends
Inkjet-printed MOS-based MEMS sensor array combined with one-dimensional convolutional neural network algorithm for identifying indoor harmful gases
Inkjet-printed ZnO-based MEMS sensor array combined with feature selection algorithm for VOCs gas analysis
High performance flexible and wearable strain sensor based on rGO and PANI modified Lycra cotton e-textile
Emerging poly(aniline co-pyrrole) nanocomposites by in-situ polymerized for high-performance flexible ammonia sensor
An enhanced flexible room temperature ammonia gas sensor based on GP-PANI/PVDF multi-hierarchical nanocomposite film
PSS-PANI/PVDF composite based flexible NH3 sensors with sub-ppm detection at room temperature
Trace-level ammonia detection at room temperature based on porous flexible polyaniline/polyvinylidene fluoride sensing film with carbon nanotube additives
Porous flexible polyaniline/polyvinylidene fluoride composite film for trace-level NH3 detection at room temperature
Enhanced flexible room temperature ammonia sensor based on PEDOT: PSS thin film with FeCl3 additives prepared by inkjet printing