Area of research
Pharmaceutical Science · Biomedical Engineering
Research interest
Research interests include Advancements in Transdermal Drug Delivery, Advanced Sensor and Energy Harvesting Materials, Neuroscience and Neural Engineering, and Advanced Materials and Mechanics.
Microneedle-based integrated pharmacokinetic and pharmacodynamic evaluation platform for personalized medicine
Magnetic soft millirobot with simultaneous locomotion and sensing capability
Polymer Hydrogel‐Based Multifunctional Theranostics for Managing Diabetic Wounds
Advances in Multifunctional Electronic Catheters for Precise and Intelligent Diagnosis and Therapy in Minimally Invasive Surgery
Coaxially printed magnetic mechanical electrical hybrid structures with actuation and sensing functionalities
Magnetoactive liquid-solid phase transitional matter
Development of Smartphone-Controlled and Microneedle-Based Wearable Continuous Glucose Monitoring System for Home-Care Diabetes Management
Iontophoresis-driven microneedle patch for the active transdermal delivery of vaccine macromolecules
Implantable magnetically-actuated capsule for on-demand delivery
Development of enzyme–inorganic hybrid nanoflower-modified electrodes and a smartphone-controlled electrochemical analyzer for point-of-care testing of salivary amylase in saliva
A touch-actuated glucose sensor fully integrated with microneedle array and reverse iontophoresis for diabetes monitoring
Intelligent wireless theranostic contact lens for electrical sensing and regulation of intraocular pressure
Recent Progress in Microneedles‐Mediated Diagnosis, Therapy, and Theranostic Systems
High-throughput fabrication of soft magneto-origami machines
Masticatory system–inspired microneedle theranostic platform for intelligent and precise diabetic management
Slug-inspired Magnetic Soft Millirobot Fully Integrated with Triboelectric Nanogenerator for On‐board Sensing and Self‐powered Charging
Flexible six-dimensional force sensor inspired by the tenon-and-mortise structure of ancient Chinese architecture for orthodontics
Solid–Liquid State Transformable Magnetorheological Millirobot
An implantable ultrasound-powered device for the treatment of brain cancer using electromagnetic fields
3D Bioprinting of Living Materials for Structure-Dependent Production of Hyaluronic Acid
A Fully Integrated Closed‐Loop System Based on Mesoporous Microneedles‐Iontophoresis for Diabetes Treatment
4D Printing of Magnetoactive Soft Materials for On-Demand Magnetic Actuation Transformation
Recent advances of microneedles used towards stimuli-responsive drug delivery, disease theranostics, and bioinspired applications
Two-dimensional black phosphorus: Properties, fabrication and application for flexible supercapacitors
Magneto‐Responsive Shutter for On‐Demand Droplet Manipulation
A Smartphone-Based Sensing System for On-Site Quantitation of Multiple Heavy Metal Ions Using Fluorescent Carbon Nanodots-Based Microarrays
A smartphone-based quantitative point-of-care testing (POCT) system for simultaneous detection of multiple heavy metal ions
Laser Direct Structuring of Bioinspired Spine with Backward Microbarbs and Hierarchical Microchannels for Ultrafast Water Transport and Efficient Fog Harvesting
Iontophoresis-driven porous microneedle array patch for active transdermal drug delivery
Smartphone-powered iontophoresis-microneedle array patch for controlled transdermal delivery