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Carbohydrate Polymers|January 3, 2019
Solid-state NMR method for the quantification of cellulose and polyester in textile blendsSimone Haslinger, Sami Hietala, Michael Hummel, et al.Colloid and Polymer Science|September 24, 2013
Polystyrene latex particles coated with crosslinked poly(N-isopropylacrylamide)Mirja Andersson, Sami Hietala, Heikki Tenhu, et al.Waste Management (New York, N.Y.)|August 27, 2019
Upcycling of cotton polyester blended textile waste to new man-made cellulose fibersSimone Haslinger, Michael Hummel, Adina Anghelescu-Hakala, et al.Carbohydrate Polymers|December 16, 2014
Monitoring of cellulose depolymerization in 1-ethyl-3-methylimidazolium acetate by shear and elongational rheologyAnne Michud, Michael Hummel, Simon Haward, et al.ACS Omega|October 21, 2024
Evaluating the Hydrothermal Stability of Superbase-Based Ionic Liquids in Cellulose Fiber SpinningWenwen Fang, Inge Schlapp-Hackl, Michael Hummel, et al.Polymers|May 2, 2020
Unidirectional All-Cellulose Composites from Flax via Controlled Impregnation with Ionic LiquidFeng Chen, Daisuke Sawada, Michael Hummel, et al.Cellulose (London, England)|January 31, 2020
Enhanced stabilization of cellulose-lignin hybrid filaments for carbon fiber productionNolene Byrne, Rasike De Silva, Yibo Ma, et al.Carbohydrate Polymers|November 8, 2017
Filament spinning of unbleached birch kraft pulps: Effect of pulping intensity on the processability and the fiber propertiesYibo Ma, Jonas Stubb, Inkeri Kontro, et al.Biomacromolecules|May 9, 2013
Separation of hemicellulose and cellulose from wood pulp by means of ionic liquid/cosolvent systemsCarmen Froschauer, Michael Hummel, Mikhail Iakovlev, et al.Soft Matter|December 15, 2015
Cellulose regeneration and spinnability from ionic liquidsLauri K J Hauru, Michael Hummel, Kaarlo Nieminen, et al.Pageof 45