Herein 2,3-dialdehyde cellulose beads prepared from Cladophora green algae nanocellulose were sulfonated and characterized by FTIR, conductometric titration, elemental analysis, SEM, ζ-potential, nitrogen adsorption–desorption and laser diffraction, aiming for its application as a potential immunosorbent material. Porous beads were prepared at mild reaction conditions in water and were chemically modified by sulfonation and reduction. The obtained 15 µm sized sulfonated beads were found to be highly charged and to have a high surface area of ~ 100 m2 g−1 and pore sizes between 20 and 60 nm, adequate for usage as immunosorbents. After reduction of remaining aldehyde groups, the beads could be classified as non-cytotoxic in indirect toxicity ...
In the present study, we report the supramolecular design of cellulose-sulfonate hydrogel beads by b...
In the past decade there has been increasing interest in exploring the use of nanocellulose in medic...
Cellulosic materials have been of tremendous importance to mankind since its discovery due to its su...
Herein 2,3-dialdehyde cellulose beads prepared from Cladophora green algae nanocellulose were sulfon...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Nanocellulose is a promising candidate for biomedical applications because of its enhanced mechanica...
Nanocellulose is a promising candidate for biomedical applications because of its enhanced mechanica...
We report a facile aqueous procedure to create multivalent displays of sulfonated ligands on CNCs fo...
We report a facile aqueous procedure to create multivalent displays of sulfonated ligands on CNCs fo...
In the present study, we report the supramolecular design of cellulose-sulfonate hydrogel beads by b...
In the present study, we report the supramolecular design of cellulose-sulfonate hydrogel beads by b...
In the past decade there has been increasing interest in exploring the use of nanocellulose in medic...
Cellulosic materials have been of tremendous importance to mankind since its discovery due to its su...
Herein 2,3-dialdehyde cellulose beads prepared from Cladophora green algae nanocellulose were sulfon...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Sulfonated cellulose beads were prepared by oxidation of Cladophora nanocellulose to 2,3-dialdehyde ...
Nanocellulose is a promising candidate for biomedical applications because of its enhanced mechanica...
Nanocellulose is a promising candidate for biomedical applications because of its enhanced mechanica...
We report a facile aqueous procedure to create multivalent displays of sulfonated ligands on CNCs fo...
We report a facile aqueous procedure to create multivalent displays of sulfonated ligands on CNCs fo...
In the present study, we report the supramolecular design of cellulose-sulfonate hydrogel beads by b...
In the present study, we report the supramolecular design of cellulose-sulfonate hydrogel beads by b...
In the past decade there has been increasing interest in exploring the use of nanocellulose in medic...
Cellulosic materials have been of tremendous importance to mankind since its discovery due to its su...