Sodium periodate oxidation of cellulose nanocrystal and its application as a paper wet strength additive
Author:
Publisher
Springer Science and Business Media LLC
Subject
Polymers and Plastics
Link
http://link.springer.com/content/pdf/10.1007/s10570-015-0575-5.pdf
Reference44 articles.
1. Ahola S, Österberg M, Laine J (2008) Cellulose nanofibrils-adsorption with poly(amideamine) epichlorohydrin studied by QCM-D and application as a paper strength additive. Cellulose 15:303–314
2. Akhlaghi SP, Berry RC, Tam KC (2013) Surface modification of cellulose nanocrystal with chitosan oligosaccharide for drug delivery applications. Cellulose 20(4):1747–1764
3. Buchhammer HM, Mende M, Oelmann M (2003) Formation of mono-sized polyelectrolyte complex dispersions: effects of polymer structure, concentration and mixing conditions. Coll Surf A-Physicochem Eng Asp 218(1–3):151–159
4. Calvini P, Conio G, Princi E, Vicini S, Pedemonte E (2006) Viscometric determination of dialdehyde content in periodate oxycellulose Part II. Topochemistry of oxidation. Cellulose 13(5):571–579
5. Crisp MT, Riehle RJ (2009) Wet-strengthening of paper in neutral pH papermaking conditions. In: Thorn I, Au CO (eds) Applications of wet-end paper chemistry. Eka Chemicals Ltd., Somerset, UK, pp 147–169. doi: 10.1007/978-1-4020-6038-0
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