Area of research
Biomedical Engineering · Automotive Engineering
Research interest
Research interests include Materials science, Scaffold, 3d printed, Composite number, Polylactic acid, and Composite material.
Biomimetic TPMS porous hydroxyapatite bone scaffolds doped with bioactive glass: digital light processing additive manufacturing, microstructure and performance
3D-Printed Thermally Activated Shape Memory PLA/TBC Composite Scaffold with Body-Compatible Temperature for Minimally Invasive Bone Repair
Multi-element CuFeSe2 nanoparticle-functionalized 3D-printed polylactic acid scaffolds with photothermal shape memory and therapy for complex bone defects
Silver‐loaded polydopamine coating mediated dual‐mode antibacterial and biological response for composite scaffolds
Zinc oxide whisker-loaded antibacterial 3D-printed polylactic acid based composite bone scaffolds with enhanced biological and mechanical performance
3D-printed molybdenum disulfide nanosheet-functionalized biodegradable polylactic acid-based composite bone scaffold with photothermally mediated shape memory and thermotherapy for complex bone defects
Dual Nano-Reinforced 3D-Printed Polylactic Acid Scaffolds for Antibacterial and Osteogenic Applications
Natural wollastonite fiber simultaneously enhanced the mechanical, degradation, and biological performance of <scp>3D</scp> printed polylactic acid bone scaffold
4D‐Printed Photothermal‐Responsive Shape‐Memory Scaffold with ε‐Polylysine Coating for Dual Antibacterial–Osteogenic Therapy
3D-printed PLA/PEG bone scaffold: Body-adaptive thermally responsive shape memory and enhanced biological performance
Ionic substitution through bredigite doping for microstructure and performance adjustment in DLP 3D-printed TPMS porous HA bone scaffolds
Biomolecule-grafted GO enhanced the mechanical and biological properties of 3D printed PLA scaffolds with TPMS porous structure
All-natural ceramic composite bone scaffolds of whitlockite/wollastonite fibers: DLP additive manufacturing, microstructure, and performance