The application of green chemistry principles in the processing of materials for advanced technologies is a steadily increasing field of research. In this work porous chitin-based materials were developed by combining the processing of chitin using ionic liquids (ILs)as a green solvent together with the use of super- critical fluid technology(SCF) as clean technology.Chitin was dissolved in 1-butyl-3-imidazolium acetate,followed by regeneration of the polymer in ethanol in specific moulds.The IL was removed using Soxhlet extraction and successive steps of extraction with SCF using carbon dioxide/ethanol ratios of 50/ 50 and70/30.The developed porous chitin-based structures (ChIL)can be classified as mesoporous materials,with very low den...
Ionic liquids (ILs) as well as closely related deep eutectic solvents (DESs) have been the most prom...
In this work, the ability to foam semi-crystalline natural-based polymers by supercritical fluid tec...
The aim of this study was to evaluate the possibility of preparing chitosan porous matrixes using s...
This study proposes a green and innovative methodology for the exploitation of natural polymers, nam...
An alternative, green method was used to develop chitin-based biocomposite (ChHA) materials by an in...
Hybrid materials have an immense potential for applications in a variety of advanced technologies, b...
Chitin and chitosan are well-known biopolymers, and they have been considered a sustainable feedstoc...
The microbead form is a material architecture that is promising for use in biomedical and cosmetic a...
Chitin agglomerated scaffolds were produced and functionalized using green chemistry principles and ...
Ionic liquids (ILs) have huge potential to provide advances in many areas such as energy, pharmaceut...
The aim of this study was to evaluate the possibility of preparing chitosan porous matrixes using su...
In the present study, we have successfully combined the biocompatible properties of chitin with the ...
The main objective of this work was the development of polymeric structures, gel and films, generate...
Developing renewable materials to reduce the dependence on fossil fuel as a feedstock for a wide ran...
Chitin and cellulose are the most abundant natural polymers. They have unique properties suitable fo...
Ionic liquids (ILs) as well as closely related deep eutectic solvents (DESs) have been the most prom...
In this work, the ability to foam semi-crystalline natural-based polymers by supercritical fluid tec...
The aim of this study was to evaluate the possibility of preparing chitosan porous matrixes using s...
This study proposes a green and innovative methodology for the exploitation of natural polymers, nam...
An alternative, green method was used to develop chitin-based biocomposite (ChHA) materials by an in...
Hybrid materials have an immense potential for applications in a variety of advanced technologies, b...
Chitin and chitosan are well-known biopolymers, and they have been considered a sustainable feedstoc...
The microbead form is a material architecture that is promising for use in biomedical and cosmetic a...
Chitin agglomerated scaffolds were produced and functionalized using green chemistry principles and ...
Ionic liquids (ILs) have huge potential to provide advances in many areas such as energy, pharmaceut...
The aim of this study was to evaluate the possibility of preparing chitosan porous matrixes using su...
In the present study, we have successfully combined the biocompatible properties of chitin with the ...
The main objective of this work was the development of polymeric structures, gel and films, generate...
Developing renewable materials to reduce the dependence on fossil fuel as a feedstock for a wide ran...
Chitin and cellulose are the most abundant natural polymers. They have unique properties suitable fo...
Ionic liquids (ILs) as well as closely related deep eutectic solvents (DESs) have been the most prom...
In this work, the ability to foam semi-crystalline natural-based polymers by supercritical fluid tec...
The aim of this study was to evaluate the possibility of preparing chitosan porous matrixes using s...