Area of research
Fluid Flow and Transfer Processes · Biomedical Engineering
Research interest
Research interests include Self-healing hydrogels, Materials science, Tissue engineering, Membrane, Rheology, and Rheometry.
Phytic acid/chitosan-assisted zwitterionic double-network hydrogels with enhanced mechanical properties, adhesion ability and ionic conductivity for wearable strain sensors
Self-healing and transparent ionic conductive PVA/pullulan/borax hydrogels with multi-sensing capabilities for wearable sensors
Large-scale perfused tissues via synthetic 3D soft microfluidics
Glycyrrhizin-Based Hydrogels Accelerate Wound Healing of Normoglycemic and Diabetic Mouse Skin
Stress-controlled shear flow alignment of collagen type I hydrogel systems
Epoxy-based solvent-tolerant nanofiltration membranes prepared via non-solvent induced phase inversion as novel class of stable membranes
Multiscale Characterization of the Mechanical Properties of Fibrin and Polyethylene Glycol (PEG) Hydrogels for Tissue Engineering Applications
Effect of solvent on the morphology and performance of cellulose triacetate membrane/cellulose nanocrystal nanocomposite pervaporation desalination membranes
Interfacial Rheology of Sterically Stabilized Colloids at Liquid Interfaces and Its Effect on the Stability of Pickering Emulsions
Biofilm-induced changes to the composite surface
Predicting the apparent wall slip when using roughened geometries: A porous medium approach