Area of research
Condensed Matter Physics · Mechanical Engineering
Research interest
Research focused on Nanotechnology and Periodontitis, with related work in Antioxidant, Star (game theory), HeLa. Notable publications include 'Self‐Propelled Rolled‐Up Polyelectrolyte Multilayer Microrockets', 'Magnetically Actuated Rolling of Star‐Shaped Hydrogel Microswimmer', and 'Forecastable and Guidable Bubble‐Propelled Microplate Motors for Cell Transport'.
Multifunctional astragalus polysaccharide composited microneedle promotes oral ulcers healing by inhibiting ferroptosis via Nrf2/HO-1/SLC7A11 axis
Microneedle-mediated biomimetic nanoparticles for targeted antioxidant and anti-inflammatory therapy in age-related macular degeneration
A Lipopolysaccharide-Directed Piezoelectric Sonosensitizer for Addressing Deep Periodontal Pocket Infections
NIR-responsive CaCO3@ BMP-2/PDA nanocomposite for multifunctional therapy in periodontitis
Education on the Importance of Doctor-patient Communication in Orthodontic Clinical Teaching
Self‐Propelled MnO <sub>2</sub> ‐Based Colloidal Motors for Active Treatment of Periodontal Inflammation
Biomimetic MnO <sub>2</sub> micromotors with asymmetric sea urchin architecture for synergistic mechano-chemical eradication of endodontic biofilms
Wet adhesive hydrogels based on niobium carbide for experimental research of oral mucosal impairment
Self‐Driven Janus Ga/Mg Micromotors for Reducing Deep Bacterial Infection in the Treatment of Periodontitis
Self-driven micromotors loaded with photosensitive adhesives and their application in dentin sensitivity
Self-propelled bioglass janus nanomotors for dentin hypersensitivity treatment
Self‐Propelled Rolled‐Up Polyelectrolyte Multilayer Microrockets
Magnetically Actuated Rolling of Star‐Shaped Hydrogel Microswimmer
Forecastable and Guidable Bubble‐Propelled Microplate Motors for Cell Transport