Area of research
Biomedical Engineering · Polymers and Plastics
Research interest
Research interests include Advanced Sensor and Energy Harvesting Materials, Conducting polymers and applications, Nanofabrication and Lithography Techniques, and Nanowire Synthesis and Applications.
High-density soft bioelectronic fibres for multimodal sensing and stimulation
Wearable aptamer-field-effect transistor sensing system for noninvasive cortisol monitoring
Flexible and Implantable Polyimide Aptamer-Field-Effect Transistor Biosensors
Implantable aptamer–field-effect transistor neuroprobes for in vivo neurotransmitter monitoring
Single-Step Dual-Layer Photolithography for Tunable and Scalable Nanopatterning
Flexible Multiplexed In2O3 Nanoribbon Aptamer-Field-Effect Transistors for Biosensing
Narrower Nanoribbon Biosensors Fabricated by Chemical Lift-off Lithography Show Higher Sensitivity
Photothermal Intracellular Delivery Using Gold Nanodisk Arrays
Spin-Dependent Ionization of Chiral Molecular Films
Phenylalanine Monitoring via Aptamer-Field-Effect Transistor Sensors
A Mediator‐Free Electroenzymatic Sensing Methodology to Mitigate Ionic and Electroactive Interferents' Effects for Reliable Wearable Metabolite and Nutrient Monitoring
Aptamer–field-effect transistors overcome Debye length limitations for small-molecule sensing
Precision-Guided Nanospears for Targeted and High-Throughput Intracellular Gene Delivery
Multiple-Patterning Nanosphere Lithography for Fabricating Periodic Three-Dimensional Hierarchical Nanostructures
Fabrication of High-Performance Ultrathin In<sub>2</sub>O<sub>3</sub> Film Field-Effect Transistors and Biosensors Using Chemical Lift-Off Lithography
Tumor‐Targeted Multimodal Optical Imaging with Versatile Cadmium‐Free Quantum Dots