Bacterial cellulose (BC) has great potential to be used as a new filler to reinforce isotactic polypropylene (iPP) due to its high crystallinity, biodegradability, and efficient mechanical properties. In this study, esterification was used to modify BC, which improved the surface compatibility of the iPP and BC. The results indicated that the cellulose octoate (CO) changed the surface properties from hydrophilic to lipophilic. Compared to the pure iPP, the tensile strength, charpy notched impact strength, and tensile modulus of the iPP/BC composites increased by 9.9%, 7.77%, and 15.64%, respectively. However, the addition of CO reinforced the iPP/CO composites. The tensile strength, charpy notched impact strength, and tensile modulus of the...
International audienceMaterials that are both biodegradable and bio-sourced are becoming serious can...
AbstractThe effect of surface functionalisation of bacterial cellulose nanofibrils (BC) and their us...
Materials that are both biodegradable and bio-sourced are becoming serious candidates for substituti...
Bacterial cellulose (BC) has great potential to be used as a new filler to reinforce isotactic polyp...
To improve the mechanical performance of isotactic polypropylene (iPP), the iPP/bacterial cellulose ...
Bacterial cellulose (BC) has great potential to be used as a new filler in reinforced isotactic poly...
Isotactic polypropylene (iPP) is a commonly used thermoplastic polymer with many excellent propertie...
Isotactic polypropylene (iPP) is a commonly used thermoplastic polymer with many excellent propertie...
Isotactic polypropylene (iPP) is a commonly used thermoplastic polymer with many excellent propertie...
Bacterial cellulose (BC) is a new kind of cellulose with great potential in enhancing preparation of...
Bacterial cellulose (BC) is a new kind of cellulose with great potential in enhancing preparation of...
Bacterial cellulose (BC) is a new kind of cellulose with great potential in enhancing preparation of...
AbstractBacterial cellulose (BC) was altered by means of 0.5-2.5% w/v diacetylglycerol in acetone-wa...
Materials that are both biodegradable and bio-sourced are becoming serious candidates for substituti...
Bacterial cellulose has high strength and crystallinity, and as such has been suggested as a strateg...
International audienceMaterials that are both biodegradable and bio-sourced are becoming serious can...
AbstractThe effect of surface functionalisation of bacterial cellulose nanofibrils (BC) and their us...
Materials that are both biodegradable and bio-sourced are becoming serious candidates for substituti...
Bacterial cellulose (BC) has great potential to be used as a new filler to reinforce isotactic polyp...
To improve the mechanical performance of isotactic polypropylene (iPP), the iPP/bacterial cellulose ...
Bacterial cellulose (BC) has great potential to be used as a new filler in reinforced isotactic poly...
Isotactic polypropylene (iPP) is a commonly used thermoplastic polymer with many excellent propertie...
Isotactic polypropylene (iPP) is a commonly used thermoplastic polymer with many excellent propertie...
Isotactic polypropylene (iPP) is a commonly used thermoplastic polymer with many excellent propertie...
Bacterial cellulose (BC) is a new kind of cellulose with great potential in enhancing preparation of...
Bacterial cellulose (BC) is a new kind of cellulose with great potential in enhancing preparation of...
Bacterial cellulose (BC) is a new kind of cellulose with great potential in enhancing preparation of...
AbstractBacterial cellulose (BC) was altered by means of 0.5-2.5% w/v diacetylglycerol in acetone-wa...
Materials that are both biodegradable and bio-sourced are becoming serious candidates for substituti...
Bacterial cellulose has high strength and crystallinity, and as such has been suggested as a strateg...
International audienceMaterials that are both biodegradable and bio-sourced are becoming serious can...
AbstractThe effect of surface functionalisation of bacterial cellulose nanofibrils (BC) and their us...
Materials that are both biodegradable and bio-sourced are becoming serious candidates for substituti...