Thin films of cellulose and cellulose–CaSiO3 composites were prepared using 1-ethyl-3-methylimidazolium acetate (EMIMAc) as the dissolution medium and the composites were regenerated from an anti-solvent. The surface hydrophilicity of the resultant cellulose composites was lowered by coating them with three different hydrophobizing agents, specifically, trichloro(octadecyl)silane (TOS), ethyl 2-cyanoacrylate (E2CA) and octadecylphosphonic acid (ODPA), using a simple dip-coating technique. The prepared materials were subjected to flame retardancy, water barrier, thermal, mechanical and biodegradation properties analyses. The addition of CaSiO3 into the cellulose increased the degradation temperature and flame retardant properties of the cell...
Single-layer films from cellulose nanofibrils on a plastic support were coated with sol–gel coated w...
Cellulose has a potential to become a key resource in the development of biodegradable film composit...
Cellulose acetate (CA) is a natural biodegradable polymer. It forms transparent films by the casting...
The aim of the present study is to produce flexible, flame-retardant, water-resistant and biodegrada...
Hybrids based on cellulose acetate (CA) and SiO2 were prepared by hydrolysis of tetraethoxysilane (T...
The hydrophilic property of cellulose is a key limiting factor for its wide application. Here, a nov...
A new hydrophobizator - tetra(ethoxy)di(octyl)disiloxane (TEDODS) - was synthesized in an ethanol so...
Bacterial cellulose (BC), a pure cellulose synthesized by Acetobacter bacteria is a highly porous ma...
It has been a persistent challenge to develop eco-friendly packaging cellulose film providing the re...
International audienceAll-cellulose composites were prepared by dispersing kraft fibers in a matrix ...
The transition from fossil-based to bio-based materials requires in-depth environmental durability a...
ABSTRACT Cellulose fibres have properties that make them very attractive as a reinforcement for ther...
Single-layer films from cellulose nanofibrils on a plastic support were coated with sol–gel coated w...
Cellulose has a potential to become a key resource in the development of biodegradable film composit...
Cellulose acetate (CA) is a natural biodegradable polymer. It forms transparent films by the casting...
The aim of the present study is to produce flexible, flame-retardant, water-resistant and biodegrada...
Hybrids based on cellulose acetate (CA) and SiO2 were prepared by hydrolysis of tetraethoxysilane (T...
The hydrophilic property of cellulose is a key limiting factor for its wide application. Here, a nov...
A new hydrophobizator - tetra(ethoxy)di(octyl)disiloxane (TEDODS) - was synthesized in an ethanol so...
Bacterial cellulose (BC), a pure cellulose synthesized by Acetobacter bacteria is a highly porous ma...
It has been a persistent challenge to develop eco-friendly packaging cellulose film providing the re...
International audienceAll-cellulose composites were prepared by dispersing kraft fibers in a matrix ...
The transition from fossil-based to bio-based materials requires in-depth environmental durability a...
ABSTRACT Cellulose fibres have properties that make them very attractive as a reinforcement for ther...
Single-layer films from cellulose nanofibrils on a plastic support were coated with sol–gel coated w...
Cellulose has a potential to become a key resource in the development of biodegradable film composit...
Cellulose acetate (CA) is a natural biodegradable polymer. It forms transparent films by the casting...