N,N-dimethylmorpholinium hydroxide was synthesized and its ability to dissolve microcrystalline cellulose and pulp was assessed for the first time. Microscopy and UV–Vis measurements showed that dissolution occurred over a range of 1–2\ua0M concentration of the solvent and a maximum solubility of 7\ua0wt% microcrystalline cellulose could be achieved. The stability of cellulose solutions was evaluated by size exclusion chromatography, which did not detect degradation to any noticeable extent. This observation was further confirmed by\ua013C NMR measurements. Finally, DLS studies confirmed that most of the cellulose was molecularly dissolved, with intrinsic viscosity values indicating cellulose chains expansion in this solvent
This work deals with the modifications resulting from the dissolution of four commercial cellulosic ...
Cellulose is the World’s most abundant biopolymer and an important renewable raw material for many m...
Funding Information: This work was done in collaboration between UPM-Kymmene Corporation and Aalto U...
A series of\ua0N-methylmorpholinium salts with varying\ua0N-alkyl chains and Cl−, OAc−\ua0and OH−\ua...
An ever-increasing demand to shift away from fossil-based feedstock towards renewable resources has ...
As we move towards a circular bioeconomy, new and advanced materials based on cellulose are constant...
Cellulose is a renewable and widely available carbohydrate polymer whose utility for mankind only in...
We have found that the dissolution of cellulose in the binary mixed solvent tetrabutylammonium aceta...
Combining NaOH with other hydroxide bases with superior dissolution properties can be a means of imp...
To further understand cellulose-solvent interactions in aqueous hydroxide solutions, cellulose behav...
"June, 1978.""This paper will be submitted for publication in Carbohydrate Research.
Etherification of cellulose using allyl glycidyl ether was carried out in aqueous alkaline solutions...
In this thesis, the synthesis and application of tetraalkylphosphonium-based ionic liquids towards t...
Cellulose dissolution and regeneration is an increasingly active research field due to the direct re...
Cellulose is the most abundant polymer and a very important renewable resource. Since cellulose cann...
This work deals with the modifications resulting from the dissolution of four commercial cellulosic ...
Cellulose is the World’s most abundant biopolymer and an important renewable raw material for many m...
Funding Information: This work was done in collaboration between UPM-Kymmene Corporation and Aalto U...
A series of\ua0N-methylmorpholinium salts with varying\ua0N-alkyl chains and Cl−, OAc−\ua0and OH−\ua...
An ever-increasing demand to shift away from fossil-based feedstock towards renewable resources has ...
As we move towards a circular bioeconomy, new and advanced materials based on cellulose are constant...
Cellulose is a renewable and widely available carbohydrate polymer whose utility for mankind only in...
We have found that the dissolution of cellulose in the binary mixed solvent tetrabutylammonium aceta...
Combining NaOH with other hydroxide bases with superior dissolution properties can be a means of imp...
To further understand cellulose-solvent interactions in aqueous hydroxide solutions, cellulose behav...
"June, 1978.""This paper will be submitted for publication in Carbohydrate Research.
Etherification of cellulose using allyl glycidyl ether was carried out in aqueous alkaline solutions...
In this thesis, the synthesis and application of tetraalkylphosphonium-based ionic liquids towards t...
Cellulose dissolution and regeneration is an increasingly active research field due to the direct re...
Cellulose is the most abundant polymer and a very important renewable resource. Since cellulose cann...
This work deals with the modifications resulting from the dissolution of four commercial cellulosic ...
Cellulose is the World’s most abundant biopolymer and an important renewable raw material for many m...
Funding Information: This work was done in collaboration between UPM-Kymmene Corporation and Aalto U...