Area of research
Biomedical Engineering · Polymers and Plastics
Research interest
Research interests include Materials science, Electrochromism, Electrochemistry, Nanotechnology, Electrochromic devices, and Weaving.
Ligand-Defect Modulation of UiO-66(Ce) Unlocks Oxygen-Vacancy-Driven Glyphosate Hydrolysis and Sensitive Detection
Single body-coupled fiber enables chipless textile electronics
Electrochemical sensing fibers for wearable health monitoring devices
Ultra-stable ionic-liquid-based electrochromism enabled by metal-organic frameworks
Photo-induced self-reduction enabling ultralow threshold voltage energy-conservation electrochromism
Multifunctional Prussian blue from nano-structure designed to wearable sensors application
Construction Of High Loading Natural Active Substances Nanoplatform and Application in Synergistic Tumor Therapy
Flexible and high-performance electrochromic devices enabled by self-assembled 2D TiO2/MXene heterostructures
Continuously Processed, Long Electrochromic Fibers with Multi-Environmental Stability
Flexible 3D Porous MoS<sub>2</sub>/CNTs Architectures with <i>ZT</i> of 0.17 at Room Temperature for Wearable Thermoelectric Applications
Size‐Dependent and Self‐Catalytic Gold@Prussian Blue Nanoparticles for the Electrochemical Detection of Hydrogen Peroxide
Sheath-run artificial muscles
Nanoporous hybrid CuO/ZnO/carbon papers used as ultrasensitive non-enzymatic electrochemical sensors
Metal–Organic Framework Derived Iron Sulfide–Carbon Core–Shell Nanorods as a Conversion-Type Battery Material