Biopolymer aerogels are an emerging class of materials with potential applications in drug delivery, thermal insulation, separation, and filtration. Chitosan is of particular interest as a sustainable, biocompatible, and abundant raw material. Here, we present urea-modified chitosan aerogels with a high surface area and excellent thermal and mechanical properties. The irreversible gelation of an acidic chitosan solution is triggered by the thermal decomposition of urea at 80 °C through an increase in pH and, more importantly, the formation of abundant ureido terminal groups. The hydrogels are dried using either supercritical CO2 drying (SCD) or ambient pressure drying (APD) methods to elucidate the influence of the drying process on...
Chitosan (CH) is one of the polymers most frequently proposed in form of hydrogels for tissue engine...
In this work, chitosan/gelatin (Ch/G) aerogels with a network organization were produced by supercri...
Chitin is the second-most abundant, non-toxic natural biopolymer containing N-acetylglucosamines (Gl...
Aerogels based on polysaccharides are bio-based lightweight open porous materials having high specif...
Chitosan aerogels were obtained after using supercritical carbon dioxide to dry physical hydrogels, ...
Supercritical carbon dioxide (scCO(2)) technology was used for preparation of functional pH sensitiv...
Chitosan, a polymer that is soluble in dilute aqueous acid, is derived from chitin, a natural polygl...
Aerogel-based scaffolds are frequently used for tissue engineering applications, since their nanofib...
Marine origin biopolymers are of great interest due to their chemical and biological diversity. In p...
Supercritical carbon dioxide (scCO(2)) technology was used for preparation of functional pH sensitiv...
A sustainable aqueous-based route is reported for the synthesis of low density mesoporous silica/chi...
Chitosan (CH) is one of the polymers most frequently proposed in form of hydrogels for tissue engine...
In this work, chitosan/gelatin (Ch/G) aerogels with a network organization were produced by supercri...
Chitin is the second-most abundant, non-toxic natural biopolymer containing N-acetylglucosamines (Gl...
Aerogels based on polysaccharides are bio-based lightweight open porous materials having high specif...
Chitosan aerogels were obtained after using supercritical carbon dioxide to dry physical hydrogels, ...
Supercritical carbon dioxide (scCO(2)) technology was used for preparation of functional pH sensitiv...
Chitosan, a polymer that is soluble in dilute aqueous acid, is derived from chitin, a natural polygl...
Aerogel-based scaffolds are frequently used for tissue engineering applications, since their nanofib...
Marine origin biopolymers are of great interest due to their chemical and biological diversity. In p...
Supercritical carbon dioxide (scCO(2)) technology was used for preparation of functional pH sensitiv...
A sustainable aqueous-based route is reported for the synthesis of low density mesoporous silica/chi...
Chitosan (CH) is one of the polymers most frequently proposed in form of hydrogels for tissue engine...
In this work, chitosan/gelatin (Ch/G) aerogels with a network organization were produced by supercri...
Chitin is the second-most abundant, non-toxic natural biopolymer containing N-acetylglucosamines (Gl...