Area of research
Mechanical Engineering · Biomedical Engineering
Research interest
Research interests include Advanced Materials and Mechanics, Advanced Sensor and Energy Harvesting Materials, Modular Robots and Swarm Intelligence, and Cellular and Composite Structures.
A three-dimensionally architected electronic skin mimicking human mechanosensation
A hydrogen generator composed of poly (lactic-co-glycolic acid) nanofibre membrane loaded iron nanoparticles for infectious diabetic wound repair
Curvature programming of freestanding 3D mesostructures and flexible electronics based on bilayer ribbon networks
Octopus-inspired sensorized soft arm for environmental interaction
Stretchable polymer composites with ultrahigh piezoelectric performance
Submillimeter-scale multimaterial terrestrial robots
Dual interaction between heartbeat-evoked responses and stimuli
Day‐ahead flexibility enhancement via joint optimization for new energy vehicle fleets and electric vehicle charging/hydrogen refuelling stations
Three-dimensional, multifunctional neural interfaces for cortical spheroids and engineered assembloids
Quantifying lithium loss in amorphous silicon thin-film anodes via titration-gas chromatography
3D-Printing Damage-Tolerant Architected Metallic Materials with Shape Recoverability via Special Deformation Design of Constituent Material
Operational flexibility enhancements using mobile energy storage in day-ahead electricity market by game-theoretic approach
Liquefied gas electrolytes for wide-temperature lithium metal batteries
Quantifying inactive lithium in lithium metal batteries
Binodal, wireless epidermal electronic systems with in-sensor analytics for neonatal intensive care
High-Efficiency Lithium-Metal Anode Enabled by Liquefied Gas Electrolytes
Multiscale Buffering Engineering in Silicon–Carbon Anode for Ultrastable Li-Ion Storage
Exposed facet engineering design of graphene-SnO2 nanorods for ultrastable Li-ion batteries
Three-Dimensional Silicon Electronic Systems Fabricated by Compressive Buckling Process
Printing, folding and assembly methods for forming 3D mesostructures in advanced materials
Self-assembled three dimensional network designs for soft electronics
“Protrusions” or “holes” in graphene: which is the better choice for sodium ion storage?
Controlled Mechanical Buckling for Origami‐Inspired Construction of 3D Microstructures in Advanced Materials
A mechanically driven form of Kirigami as a route to 3D mesostructures in micro/nanomembranes
Soft network composite materials with deterministic and bio-inspired designs
Wireless Optofluidic Systems for Programmable In Vivo Pharmacology and Optogenetics
Fractal design concepts for stretchable electronics
Stretchable batteries with self-similar serpentine interconnects and integrated wireless recharging systems
High performance piezoelectric devices based on aligned arrays of nanofibers of poly(vinylidenefluoride-co-trifluoroethylene)
Ultrathin conformal devices for precise and continuous thermal characterization of human skin