Area of research
Biomaterials · Materials Chemistry
Research interest
Research interests include Materials science, Pickering emulsion, Nanocellulose, Emulsion, Active packaging, and Cellulose.
Construction of magnetic response nanocellulose particles to realize smart antibacterial of Pickering emulsion
Regulating dispersion of OEO Pickering emulsion to construct smart antibacterial nanocellulose packaging films contained microcapsule
Smart Pickering emulsions stabilized by functionalized nanoparticles: Innovative applications in advanced food packaging
Smart antibacterial packaging films prepared by TOCNC/CS nanoparticles stabilized Pickering emulsion to prolong shelf-life of fresh pork
Modifying polysaccharides to realized advanced function of novel food packaging materials
Preparation of smart antibacterial sodium alginate hydrogel based on cinnamaldehyde Pickering emulsion
Smart antibacterial nanocellulose packaging film based on pH-stimulate responsive microcapsules synthesized by Pickering emulsion template
Smart antimicrobial Pickering emulsion stabilized by pH-responsive cellulose-based nanoparticles
Leaf porous structure Inspired packaging film for fruits preservation and monitoring CO2 concentration of package
Schiff base synergized with protonation of PEI to achieve smart antibacteria of nanocellulose packaging films
CO<sub>2</sub> Escaping In Situ Endowed the Antimicrobial Nanocellulose Packaging Film with a Microporous Structure
Nanocellulose/Nisin Hydrogel Microparticles as Sustained Antimicrobial Coatings for Paper Packaging
Recent advances in cellulose microgels: Preparations and functionalized applications
Thermal insulation and antibacterial foam templated from bagasse nanocellulose /nisin complex stabilized Pickering emulsion
Preparation of Bio-Based Foams with a Uniform Pore Structure by Nanocellulose/Nisin/Waterborne-Polyurethane-Stabilized Pickering Emulsion
ZnO nanoparticles stabilized oregano essential oil Pickering emulsion for functional cellulose nanofibrils packaging films with antimicrobial and antioxidant activity
A high-stable soybean-oil-based epoxy acrylate emulsion stabilized by silanized nanocrystalline cellulose as a sustainable paper coating for enhanced water vapor barrier
TOCNC-g-PEI nanoparticle encapsulated oregano essential oil for enhancing the antimicrobial activity of cellulose nanofibril packaging films
“Bottom-Up” Assembly of Nanocellulose Microgels as Stabilizer for Pickering Foam Forming
Preparation of sugarcane bagasse nanocellulose hydrogel as a colourimetric freshness indicator for intelligent food packaging
Development of pH indicator and antimicrobial cellulose nanofibre packaging film based on purple sweet potato anthocyanin and oregano essential oil
Bio-based antimicrobial packaging from sugarcane bagasse nanocellulose/nisin hybrid films
Developed Chitosan/Oregano Essential Oil Biocomposite Packaging Film Enhanced by Cellulose Nanofibril
Effect of endoglucanase and high-pressure homogenization post-treatments on mechanically grinded cellulose nanofibrils and their film performance
Combined mechanical grinding and enzyme post-treatment leading to increased yield and size uniformity of cellulose nanofibrils
Facile preparation of reactive hydrophobic cellulose nanofibril film for reducing water vapor permeability (WVP) in packaging applications
Utilization of a dicopper(II) complex of tetrapyridyl ligand as the precursor for the synthesis of copper-based composites and their catalysis
Application of Nanofibrillated Cellulose on BOPP/LDPE Film as Oxygen Barrier and Antimicrobial Coating Based on Cold Plasma Treatment
Preparation of Self-supporting Bagasse Cellulose Nanofibrils Hydrogels Induced by Zinc Ions
Acetylation improves thermal stability and transmittance in FOLED substrates based on nanocellulose films