Wet spinning of cellulose nanowhiskers; fiber yarns obtained only from colloidal cellulose crystals
Author:
Funder
KAKENHI
Publisher
Elsevier BV
Subject
Polymers and Plastics,Materials Chemistry,Organic Chemistry
Reference27 articles.
1. Review of recent research into cellulosic whiskers, their properties and their application in nanocomposite field;Azizi Samir;Biomacromolecules,2005
2. Rodlike cellulose microcrystals: structure, properties, and applications;de Souza Lima;Macromol. Rapid Commun.,2004
3. Electrostatic or steric? – preparations and characterizations of well-dispersed systems containing rod-like nanowhiskers of crystalline polysaccharides;Araki;Soft Matter,2013
4. Cellulose structure and biosynthesis: what is in store for the 21st century?;Brown;J. Polym. Sci. Part A: Polym. Chem.,2004
5. Individualization of nano-sized plant cellulose fibrils by direct surface carboxylation using TEMPO catalyst under neutral conditions;Saito;Biomacromolecules,2009
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5. Unravelling hierarchical patterning of biomaterial inks with 3D microfluidic-assisted spinning: a paradigm shift in bioprinting technologies;Frontiers in Biomaterials Science;2023-10-17
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