Area of research
Biomedical Engineering · Materials Chemistry
Research interest
Research interests include Materials science, Triboelectric effect, Nanotechnology, Reactive oxygen species, Sonodynamic therapy, and Nanogenerator.
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
Chirality of Copper–Amino Acid Nanoparticles Determines Chemodynamic Cancer Therapeutic Outcome
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
Enhanced Sonodynamic Cancer Therapy through Iron‐Doping and Oxygen‐Vacancy Engineering of Piezoelectric Bismuth Tungstate Nanosheets
Implantable, Biodegradable, and Wireless Triboelectric Devices for Cancer Therapy through Disrupting Microtubule and Actins Dynamics
Near-infrared photosensitizers adaptive to tumor hypoxic microenvironment for synergistic photothermal-photodynamic and immunotherapy
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
Bioinspired Electron Polarization of Nanozymes with a Human Self‐Generated Electric Field for Cancer Catalytic Therapy
Self‐Powered, Implantable, and Wirelessly Controlled NO Generation System for Intracranial Neuroglioma Therapy
Self‐driven Electrical Stimulation Promotes Cancer Catalytic Therapy Based on Fully Conjugated Covalent Organic Framework Nanocages
Oxygen vacancy-engineered BaTiO3 nanoparticles for synergistic cancer photothermal, photodynamic, and catalytic therapy
Electricity‐Assisted Cancer Therapy: From Traditional Clinic Applications to Emerging Methods Integrated with Nanotechnologies
Self-powered electrochemical water treatment system for pollutant degradation and bacterial inactivation based on high-efficient Co(OH)2/Pt electrocatalyst
Acidity-responsive nanocages as robust reactive oxygen species generators with butterfly effects for maximizing oxidative damage and enhancing cancer therapy
Metformin capped Cu2(OH)3Cl nanosheets for chemodynamic wound disinfection