Area of research
Biomedical Engineering · Materials Chemistry
Research interest
Research interests include Materials science, Sonodynamic therapy, Piezoelectricity, Triboelectric effect, Reactive oxygen species, and Hydrogen peroxide.
Flexible Triboelectric Nanogenerator Patch for Accelerated Wound Healing Through the Synergy of Electrostimulation and Photothermal Effect
A self-powered electromodulative system based on an abiotic-biotic hybrid for cancer catalytic therapy
Manganese Dioxide Coated Piezoelectric Nanosonosensitizer for Cancer Therapy with Tumor Microenvironment Remodeling and Multienzyme‐Like Catalysis
An intelligent triboelectric sensing system for monitoring and early warning of dry eye syndrome
Versatile hydrogel towards coupling of energy harvesting and storage for self-powered round-the-clock sensing
Urchin-like piezoelectric ZnSnO3/Cu3P p-n heterojunction for enhanced cancer sonodynamic therapy
Self‐Driven Electricity Modulates d‐Band Electrons of Copper Single‐Atom Nanozyme for Boosting Cancer Therapy
Self-powered energy harvesting and implantable storage system based on hydrogel-enabled all-solid-state supercapacitor and triboelectric nanogenerator
Ultrathin, flexible, and piezoelectric Janus nanofibrous dressing for wound healing
Enhanced Sonodynamic Cancer Therapy through Iron‐Doping and Oxygen‐Vacancy Engineering of Piezoelectric Bismuth Tungstate Nanosheets
Unconstrained Piezoelectric Vascular Electronics for Wireless Monitoring of Hemodynamics and Cardiovascular Health
Manganese oxide-modified bismuth oxychloride piezoelectric nanoplatform with multiple enzyme-like activities for cancer sonodynamic therapy
Piezoelectric Ba<sub>0.85</sub>Sr<sub>0.15</sub>TiO<sub>3</sub> Nanosonosensitizer with Nitric Oxide Delivery for Boosting Cancer Therapy
Self-Driven Electrical Stimulation-Promoted Cancer Catalytic Therapy and Chemotherapy Based on an Implantable Nanofibrous Patch
Bismuth nanoclusters on nitrogen-doped porous carbon nanoenzyme for cancer therapy
Flexible and highly piezoelectric nanofibers with organic–inorganic coaxial structure for self-powered physiological multimodal sensing