We have developed a novel process to convert low molecular weight microcrystalline cellulose into stiff regenerated cellulose fibers using a dry-jet wet fiber spinning process. Highly aligned cellulose fibers were spun from optically anisotropic microcrystalline cellulose/1-ethyl-3-methylimidazolium diethyl phosphate (EMImDEP) solutions. As the cellulose concentration increased from 7.6 to 12.4 wt %, the solution texture changed from completely isotropic to weakly nematic. Higher concentration solutions (>15 wt %) showed strongly optically anisotropic patterns, with clearing temperatures ranging from 80 to 90 °C. Cellulose fibers were spun from 12.4, 15.2, and 18.0 wt % cellulose solutions. The physical properties of these fibers were studi...
Methylcellulose/cellulose nanocrystal (MC/CNC) nanocomposite fibers showing high ductility and high ...
In this study, 1-ethyl-3-methylimidazolium diethyl phosphate, having the advantages of regulating th...
Regenerated cellulose fibres can become a sustainable alternative to cotton and polyester in textile...
The molecular deformation and crystal orientation of a range of next generation regenerated cellulos...
Cellulose is difficult to solubilize and undergoes thermal decomposition prior to melting. In recent...
This is the final version of the article. Available from the publisher via the DOI in this record.Th...
Cellulose is difficult to solubilize and undergoes thermal decomposition prior to melting. In recent...
Mechanically strong cellulose fibers spun with environmentally friendly technology have been under t...
In this paper, we report the development of a novel regenerated cellulose fibre process of the Lyoce...
Abstract: Lyocell fibers have received increased attention during the recent years. This is due to t...
Abstract: Lyocell fibers have received increased attention during the recent years. This is due to t...
Inverted nozzle-pressurized gyration was used as a processing methodology for regenerating cellulose...
This dissertation presents the further development of IONCELL technology for the productionof modifi...
Cellulose acetate is one of the most important cellulose derivatives. Herein we present a method to ...
Cellulose acetate is one of the most important cellulose derivatives. Herein we present a method to ...
Methylcellulose/cellulose nanocrystal (MC/CNC) nanocomposite fibers showing high ductility and high ...
In this study, 1-ethyl-3-methylimidazolium diethyl phosphate, having the advantages of regulating th...
Regenerated cellulose fibres can become a sustainable alternative to cotton and polyester in textile...
The molecular deformation and crystal orientation of a range of next generation regenerated cellulos...
Cellulose is difficult to solubilize and undergoes thermal decomposition prior to melting. In recent...
This is the final version of the article. Available from the publisher via the DOI in this record.Th...
Cellulose is difficult to solubilize and undergoes thermal decomposition prior to melting. In recent...
Mechanically strong cellulose fibers spun with environmentally friendly technology have been under t...
In this paper, we report the development of a novel regenerated cellulose fibre process of the Lyoce...
Abstract: Lyocell fibers have received increased attention during the recent years. This is due to t...
Abstract: Lyocell fibers have received increased attention during the recent years. This is due to t...
Inverted nozzle-pressurized gyration was used as a processing methodology for regenerating cellulose...
This dissertation presents the further development of IONCELL technology for the productionof modifi...
Cellulose acetate is one of the most important cellulose derivatives. Herein we present a method to ...
Cellulose acetate is one of the most important cellulose derivatives. Herein we present a method to ...
Methylcellulose/cellulose nanocrystal (MC/CNC) nanocomposite fibers showing high ductility and high ...
In this study, 1-ethyl-3-methylimidazolium diethyl phosphate, having the advantages of regulating th...
Regenerated cellulose fibres can become a sustainable alternative to cotton and polyester in textile...