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1. Thermal crosslinking kinetics of shellac and its coating for stiffened and water stable cellulose-based paper straws.

2. Synergistically improve the strength and porosity of carbon paper by using a novel phenol formaldehyde resin modified with cellulose nanofiber for proton exchange membrane fuel cells.

3. Carboxymethyl cellulose-based photothermal film: A sustainable packaging with high barrier and tensile strength for food long-term antibacterial protection.

4. Physicochemical and thermal characterization of the edible shellac films incorporated with oleic acid to enhance flexibility, water barrier and retard aging.

5. Melt-processable polyvinyl alcohol/lignin composites with improved strength via synergistic plasticization of lignin.

6. Efficient separation of acetylated cellulose from eucalyptus and its enhancement on the mechanical strength of polylactic acid.

7. BNNS/PVA bilayer composite film with multiple-improved properties by the synergistic actions of cellulose nanofibrils and lignin nanoparticles.

8. Measuring Tensile Strength to Better Establish Protective Capacity of Sacral Prophylactic Dressings Over 7 Days of Laboratory Aging.

9. Highly Stretchable and Compressible Cellulose Ionic Hydrogels for Flexible Strain Sensors.

10. Using Liquid Smoke to Improve Mechanical and Water Resistance Properties of Gelatin Films.