Area of research
Biomedical Engineering · Mechanical Engineering
Research interest
Research focused on Self-healing hydrogels and Porosity, with related work in Soft robotics, Nanotechnology, PLGA. Notable publications include 'Anisotropically Fatigue‐Resistant Hydrogels', 'Fatigue‐Resistant Conducting Polymer Hydrogels as Strain Sensor for Underwater Robotics', and 'Bioinspired 2D Isotropically Fatigue‐Resistant Hydrogels'.
Advances in Covalent Organic Frameworks as Fluorescent Sensors for pH
Fatigue‐Resistant Conducting Polymer Hydrogels as Strain Sensor for Underwater Robotics
Impact‐Resistant Hydrogels by Harnessing 2D Hierarchical Structures (Adv. Mater. 1/2023)
Impact‐Resistant Hydrogels by Harnessing 2D Hierarchical Structures
Bioinspired 3D Printing of Functional Materials by Harnessing Enzyme‐Induced Biomineralization
Bioinspired 3D Printing of Functional Materials by Harnessing Enzyme‐Induced Biomineralization (Adv. Funct. Mater. 34/2022)
Anisotropically Fatigue‐Resistant Hydrogels
Bioinspired 2D Isotropically Fatigue‐Resistant Hydrogels
Structural mechanics of 3D-printed poly(lactic acid) scaffolds with tetragonal, hexagonal and wheel-like designs
Restoration of osteochondral defects by implanting bilayered poly(lactide-co-glycolide) porous scaffolds in rabbit joints for 12 and 24 weeks
Critical Areas of Proliferation of Single Cells on Micropatterned Surfaces and Corresponding Cell Type Dependence
Bilayered PLGA/PLGA-HAp Composite Scaffold for Osteochondral Tissue Engineering and Tissue Regeneration
TBX6 compound inheritance leads to congenital vertebral malformations in humans and mice
Design and preparation of quasi-spherical salt particles as water-soluble porogens to fabricate hydrophobic porous scaffolds for tissue engineering and tissue regeneration