Area of research
Biomedical Engineering · Materials Chemistry
Research interest
Research interests include Ferroelectric and Piezoelectric Materials, Acoustic Wave Resonator Technologies, Multiferroics and related materials, and Advanced Sensor and Energy Harvesting Materials.
High electrostrain in a lead-free piezoceramic from a chemopiezoelectric effect
Single-Ion Polymer-in-Salt Electrolytes Enabling Percolating Ionic Nanoaggregates for Ambient-Temperature Solid-State Batteries
Giant intrinsic electrocaloric effect in ferroelectrics by local structural engineering
Synergistic Defect-Driven Chemocatalysis and Ultrasound-Activated Piezocatalysis by Two-Dimensional SnSe Nanosheets
Large linear high-frequency strain by interlocked monoclinic polar nanoregions
Giant electrostrain coefficient under low driving electric field in sodium potassium niobate piezoelectric ceramics with symmetrical bipolar strain
Partitioning polar-slush strategy in relaxors leads to large energy-storage capability
Interpretable spatial machine learning insights into urban sanitation challenges: A case study of human feces distribution in San Francisco
Joint detection and localization of False Data Injection Attacks in smart grids: An enhanced state estimation approach
Engineered Magnetic Polymer Nanoparticles Can Ameliorate Breast Cancer Treatment Inducing Pyroptosis–Starvation along with Chemotherapy
Mast cell stabilization: new mechanism underlying the therapeutic effect of intense pulsed light on rosacea
Engineering polymer nanoparticles using cell membrane coating technology and their application in cancer treatments: Opportunities and challenges