Area of research
Renewable Energy, Sustainability and the Environment · Surfaces, Coatings and Films
Research interest
Research focused on Corrosion and Emulsion, with related work in Chemical engineering, Composite material, Ovalbumin. Notable publications include 'Construction and formation mechanism of phase-change polysaccharide–protein composite emulsion gels: For simultaneous printing of food products with complex structures and fine...', 'Synergistic modification of ovalbumin by pH-driven and metal-phenolic networks: Development of dysphagia friendly high internal phase Pickering emulsions', and 'One stone two birds: Chitosan intercalated montmorillonite microcapsules with cationic pollutant adsorption and self-healing for synergistic corrosion resistance'.
One stone two birds: Chitosan intercalated montmorillonite microcapsules with cationic pollutant adsorption and self-healing for synergistic corrosion resistance
Exploring the potential of ultrasound to improve the physicochemical properties of protein-based emulsion gels: by ultrasonically treating emulsion (pre-emulsification, post-emulsification) and substrate solution respectively
LDH-based functionalized microcapsules: Multi-step active corrosion resistance strategy toward durable cementitious composites
Triple-functionality corrosion resistance strategy for cementitious composites via NO2−-intercalated LDH@microcapsules: Coupled behavior of ion exchange and crack self-healing
Construction and formation mechanism of phase-change polysaccharide–protein composite emulsion gels: For simultaneous printing of food products with complex structures and fine patterns
Synergistic modification of ovalbumin by pH-driven and metal-phenolic networks: Development of dysphagia friendly high internal phase Pickering emulsions
Control of the Hydroquinone/Benzoquinone Redox State in High‐Mobility Semiconducting Conjugated Coordination Polymers
CeO2 hybrid SiO2 microcapsules with hydrophobicity for enhancing corrosion resistance
Preparation of TiO2 hybrid SiO2 wall environment-friendly microcapsules based on interfacial polycondensation: Realize the integration of self-cleaning and self-healing functions
CaCO3/TiO2 hybrid microcapsules with self-cleaning and self-repairing functions for decorative coatings