| | Letzte Änderung: 11.06.2010 | |
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Forschungsbereiche
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Dissolution and forming of cellulose with ionic liquids Cellulose multi-component fibers from ionic liquids N-Methylmorpholine-N-oxide ring cleavage registration by ESR under
heating conditions of the Lyocell process Thermal stability of Lyocell solutions: Experimental and Modeling
using Cluster analysis and Partial Least Squares Regression Interactions of Ionic Liquids with Polysaccharides. 7: Thermal investigations
of cellulose/N-methylmorpholine-N-oxide solutions Studies on the Stabilization of Modified Lyocell solutions New Paperadditives based on Xylan Manufacturing technologies and characterisation of endless collagen
monofilaments Interactions between rod-like cellulose nanocrystals and xylan derivatives:
A light scattering study Adsorption of hydroxypropyltrimethylammonium xylan onto self-assembled
monolayers and model cellulose surfaces States of dissolution of cellulose in selected direct dissolution
agents Smartcel™clima – the Cellulose PCM fibre with high functionality Zeolith hollow fibres for filterapplications prepared by cellulose
spinning process Possibilities for the Physical Modification of Cellulose Shapes using
Ionic Liquids Cellulose blends from Ionic Liquids Aspects of the interaction of native and synthetic polymers with direct
dissolving liquids Potenziale der Trocken-Nass-Verformung für die Entwicklung von Funktionsfaserstoffen
mit innovativen Applikationseigenschaften Innovative Lösungsmittelkonzepte für die umweltfreundliche Celluloseverformung
– Cellulosefunktionsfaserstoffe Nanotechnologisch modifizierte Fasern – Schlüssel für die zukünftige
Entwicklung neuer Papierprodukte? |
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