[[abstract]]Waterborne polyurethane (PU) is a green, high performance elastomer but the viscosity of the dispersion is generally too low for direct three-dimensional (3D) printing. Composite brings additional properties while reinforcing the substrate. In the study, printable PU composites were successfully prepared by introducing cellulose nanofibrils (CNFs) and the viscosity was effectively regulated by the amount of neutralizing agent during in-situ synthesis. Rheological measurements supported the good printability. TEM images revealed that CNFs linked multiple PU nanoparticles to form a 'skewer’ structure. PU/CNF scaffolds were 3D-printed with excellent pattern fidelity and structure stability. Meanwhile, the compression modulus was mu...
In this study, traditional polyol was partially replaced with green, environmentally friendly cellul...
Environmental issues are growing in importance due to waste management and depletion of fossil resou...
Cellulose nanofibrils (CNFs) were prepared by sulfuric acid hydrolysis from cotton microfibers, and ...
[[abstract]]Waterborne polyurethane (PU) is a green, high performance elastomer but the viscosity of...
In order to continue the development of inks valid for cold extrusion 3D printing, waterborne, polyu...
335 p.Polyurethane-ureas are very versatile polymers that can be process in many ways and used in an...
3D printing has exponentially grown in popularity due to the personalization of each printed part it...
In recent studies, polyurethane has shown multiple properties that make it an excellent candidate ma...
In this work, shape-customized scaffolds based on waterborne polyurethane-urea (WBPUU) were prepared...
Inadequate rheological properties of gelatin methacrylamide (GelMA) were successfully improved by in...
[[abstract]]Three-dimensional bioprinting serves as an attractive platform to fabricate customized t...
Regenerated cellulose nanoparticles (RCNs) reinforced waterborne polyurethanes (WPU) were developed ...
Three-dimensional bioprinting serves as an attractive platform to fabricate customized tissue-engine...
Abstract Cellulose nanopapers, known for excellent mechanical properties, loses 90% of their stiffn...
Cellulose nanocrystals (CNC) were isolated from sisal fibres and were incorporated in the form of an...
In this study, traditional polyol was partially replaced with green, environmentally friendly cellul...
Environmental issues are growing in importance due to waste management and depletion of fossil resou...
Cellulose nanofibrils (CNFs) were prepared by sulfuric acid hydrolysis from cotton microfibers, and ...
[[abstract]]Waterborne polyurethane (PU) is a green, high performance elastomer but the viscosity of...
In order to continue the development of inks valid for cold extrusion 3D printing, waterborne, polyu...
335 p.Polyurethane-ureas are very versatile polymers that can be process in many ways and used in an...
3D printing has exponentially grown in popularity due to the personalization of each printed part it...
In recent studies, polyurethane has shown multiple properties that make it an excellent candidate ma...
In this work, shape-customized scaffolds based on waterborne polyurethane-urea (WBPUU) were prepared...
Inadequate rheological properties of gelatin methacrylamide (GelMA) were successfully improved by in...
[[abstract]]Three-dimensional bioprinting serves as an attractive platform to fabricate customized t...
Regenerated cellulose nanoparticles (RCNs) reinforced waterborne polyurethanes (WPU) were developed ...
Three-dimensional bioprinting serves as an attractive platform to fabricate customized tissue-engine...
Abstract Cellulose nanopapers, known for excellent mechanical properties, loses 90% of their stiffn...
Cellulose nanocrystals (CNC) were isolated from sisal fibres and were incorporated in the form of an...
In this study, traditional polyol was partially replaced with green, environmentally friendly cellul...
Environmental issues are growing in importance due to waste management and depletion of fossil resou...
Cellulose nanofibrils (CNFs) were prepared by sulfuric acid hydrolysis from cotton microfibers, and ...