A series of regenerated cellulose fibers was produced from dopes prepared by mixing and dissolving cellulose of two different degrees of polymerization in different ratios in the ionic liquid 1-ethyl-3-methyl-imidazolium acetate. Viscoelastic properties of the spin dopes were characterized by controlled stress rheometry. The cellulose solutions were solidified in pure water by the traditionalwet spinning technique. The resulting fibers were characterized by means of wet and dry tensile testing and scanning electron microscopy. The characterization revealed a compact and homogeneous fiber. A nonlinear relationship between degree of polymerization and fiber properties was observed with a moderate difference in mechanical properties in a broad...
Ionic liquids are a novel class of solvents which have attracted a large interest from industrials a...
In the present work, solutions of cellulose dissolved in an ionic liquid (1-ethyl-3-methylimidazoliu...
Objective of this project is to study whether extensional rheology is applicable for solutions of ce...
A series of regenerated cellulose fibers was produced from dopes prepared by mixing and dissolving c...
The use of ionic liquid solvents for thespinning of regenerated cellulose fibres has thepotential to...
Cellulose is difficult to solubilize and undergoes thermal decomposition prior to melting. In recent...
This dissertation presents the further development of IONCELL technology for the productionof modifi...
In this study, 1-ethyl-3-methylimidazolium diethyl phosphate, having the advantages of regulating th...
Cellulose is the most common organic polymer on earth. It is a natural, biodegradable polymer that c...
textThe objectives of the research are to establish the process of obtaining regenerated fibers and ...
Regenerated cellulose fibres can become a sustainable alternative to cotton and polyester in textile...
Dissolution and regeneration of cotton pulp using ionic liquids as solvent was investigated. The phy...
Abstract: Lyocell fibers have received increased attention during the recent years. This is due to t...
Hydrogels of TEMPO-oxidized nanocellulose were stabilized for dry-jet wet spinning using a shell of ...
Hydrogels of TEMPO-oxidized nanocellulose were stabilized for dry-jet wet spinning using a shell of ...
Ionic liquids are a novel class of solvents which have attracted a large interest from industrials a...
In the present work, solutions of cellulose dissolved in an ionic liquid (1-ethyl-3-methylimidazoliu...
Objective of this project is to study whether extensional rheology is applicable for solutions of ce...
A series of regenerated cellulose fibers was produced from dopes prepared by mixing and dissolving c...
The use of ionic liquid solvents for thespinning of regenerated cellulose fibres has thepotential to...
Cellulose is difficult to solubilize and undergoes thermal decomposition prior to melting. In recent...
This dissertation presents the further development of IONCELL technology for the productionof modifi...
In this study, 1-ethyl-3-methylimidazolium diethyl phosphate, having the advantages of regulating th...
Cellulose is the most common organic polymer on earth. It is a natural, biodegradable polymer that c...
textThe objectives of the research are to establish the process of obtaining regenerated fibers and ...
Regenerated cellulose fibres can become a sustainable alternative to cotton and polyester in textile...
Dissolution and regeneration of cotton pulp using ionic liquids as solvent was investigated. The phy...
Abstract: Lyocell fibers have received increased attention during the recent years. This is due to t...
Hydrogels of TEMPO-oxidized nanocellulose were stabilized for dry-jet wet spinning using a shell of ...
Hydrogels of TEMPO-oxidized nanocellulose were stabilized for dry-jet wet spinning using a shell of ...
Ionic liquids are a novel class of solvents which have attracted a large interest from industrials a...
In the present work, solutions of cellulose dissolved in an ionic liquid (1-ethyl-3-methylimidazoliu...
Objective of this project is to study whether extensional rheology is applicable for solutions of ce...