Area of research
Biomaterials · Surfaces, Coatings and Films
Research interest
Research interests include Materials science, Nanotechnology, Chemistry, Coacervate, Peptide, and Adhesion.
Peptide-Based Complex Coacervates Stabilized by Cation−π Interactions for Cell Engineering
Phase-separating peptide coacervates with programmable material properties for universal intracellular delivery of macromolecules
Protein-Based Biological Materials: Molecular Design and Artificial Production
Peptide-based liquid droplets as emerging delivery vehicles
Phase-separating peptides for direct cytosolic delivery and redox-activated release of macromolecular therapeutics
Protein‐Based Encapsulation Strategies: Toward Micro‐ and Nanoscale Carriers with Increased Functionality
Interplay between Interfacial Energy, Contact Mechanics, and Capillary Forces in EGaIn Droplets
Liquid–Liquid Phase Separation of Short Histidine- and Tyrosine-Rich Peptides: Sequence Specificity and Molecular Topology
Thermal‐Disrupting Interface Mitigates Intercellular Cohesion Loss for Accurate Topical Antibacterial Therapy
A Double‐Layer Mechanochromic Hydrogel with Multidirectional Force Sensing and Encryption Capability
White Light-Emitting Multistimuli-Responsive Hydrogels with Lanthanides and Carbon Dots
Preventing mussel adhesion using lubricant-infused materials
Orientational Coupling Locally Orchestrates a Cell Migration Pattern for Re‐Epithelialization
Bio‐Inspired Mechanotactic Hybrids for Orchestrating Traction‐Mediated Epithelial Migration
Mussel adhesion is dictated by time-regulated secretion and molecular conformation of mussel adhesive proteins
Size effects and shape memory properties in ZrO2 ceramic micro- and nano-pillars
Multi-scale thermal stability of a hard thermoplastic protein-based material