Assembly of (bio)polymers into long-range anisotropic nanostructured gels and aerogels is of great interest in advanced material engineering since it enables directional tuning of properties, such as diffusivity, light, heat, and sound propagation, cell proliferation, and mechanical properties. Here we present an approach toward anisotropic cellulose II gels and aerogels that employs specific diffusion and phase separation phenomena occurring during decelerated infusion of an antisolvent into isotropic supercooled solutions of cellulose in an ionic liquid to effectuate supramolecular assembly of cellulose in anisotropic colloidal network structures. At the example of the distillable ionic liquid 1,1,3,3-tetramethylguanidinium acetate, the ...
Le but de ce travail de thèse est de développer des aérogels biosourcés, mécaniquement résistants et...
The mechanically stable nature of cellulose makes it potentially suitable for the reinforcement of p...
We use dry-jet wet spinning in a coaxial configuration by extruding an aqueous colloidal suspension ...
International audienceAssembly of (bio)polymers into long-range anisotropic nanostructured gels and ...
The development of a facile and fast method to construct anisotropic hydrogels with the ability to i...
International audienceCellulose II aerogels are a highly porous class of biobased ultra-light-weight...
Eco-friendly materials with superior thermal insulation and mechanical properties are desirable for ...
Cellulose nanofibril (CNF) aerogels are renewable and biocompatible materials with high porosity and...
Monolithic cellulose aerogels were prepared via a dissolution–regeneration route by dissolving cellu...
A process has been developed to create self-supporting hydrogels with low solids content (down to 0....
International audienceNovel various aerogel-like materials were prepared from the biomass, cellulose...
Highly porous, strong aerogels with anisotropicstructural properties are of great interest for multi...
International audienceUltra-light and highly porous cellulose material, aerocellulose, is prepared v...
Nanofibrillar aerogels were prepared from cellulose, spruce wood and from mixtures of cellulose, lig...
Le but de ce travail de thèse est de développer des aérogels biosourcés, mécaniquement résistants et...
The mechanically stable nature of cellulose makes it potentially suitable for the reinforcement of p...
We use dry-jet wet spinning in a coaxial configuration by extruding an aqueous colloidal suspension ...
International audienceAssembly of (bio)polymers into long-range anisotropic nanostructured gels and ...
The development of a facile and fast method to construct anisotropic hydrogels with the ability to i...
International audienceCellulose II aerogels are a highly porous class of biobased ultra-light-weight...
Eco-friendly materials with superior thermal insulation and mechanical properties are desirable for ...
Cellulose nanofibril (CNF) aerogels are renewable and biocompatible materials with high porosity and...
Monolithic cellulose aerogels were prepared via a dissolution–regeneration route by dissolving cellu...
A process has been developed to create self-supporting hydrogels with low solids content (down to 0....
International audienceNovel various aerogel-like materials were prepared from the biomass, cellulose...
Highly porous, strong aerogels with anisotropicstructural properties are of great interest for multi...
International audienceUltra-light and highly porous cellulose material, aerocellulose, is prepared v...
Nanofibrillar aerogels were prepared from cellulose, spruce wood and from mixtures of cellulose, lig...
Le but de ce travail de thèse est de développer des aérogels biosourcés, mécaniquement résistants et...
The mechanically stable nature of cellulose makes it potentially suitable for the reinforcement of p...
We use dry-jet wet spinning in a coaxial configuration by extruding an aqueous colloidal suspension ...