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Carbohydrate Polymers|December 28, 2017
On the origin of sorption hysteresis in cellulosic materialsLennart Salmén, Per A LarssonCarbohydrate Polymers|August 21, 2022
Water-resistant hybrid cellulose nanofibril films prepared by charge reversal on gibbsite nanoclaysJatin Sethi, Lars Wågberg, Per A LarssonACS Macro Letters|May 25, 2022
Immunoselective Cellulose Nanospheres: A Versatile Platform for NanotheranosticsChristopher Carrick, Lars Wågberg, Per A LarssonBiomacromolecules|March 14, 2020
Self-Fibrillating Cellulose Fibers: Rapid In Situ Nanofibrillation to Prepare Strong, Transparent, and Gas Barrier NanopapersYunus Can Gorur, Per A Larsson, Lars WågbergCarbohydrate Polymers|December 28, 2017
Chemical modification of cellulose-rich fibres to clarify the influence of the chemical structure on the physical and mechanical properties of cellulose fibres and thereof made sheetsVerónica López Durán, Per A Larsson, Lars WågbergBiomacromolecules|April 30, 2014
Ductile all-cellulose nanocomposite films fabricated from core-shell structured cellulose nanofibrilsPer A Larsson, Lars A Berglund, Lars WågbergCarbohydrate Polymers|January 22, 2025
High-consistency modification of cellulose fibers: Resource-efficient introduction of cationic charges, and their effect on fiber and nanofibril propertiesJohanna Sjölund, Gunnar Westman, Lars Wågberg, et al.Carbohydrate Polymers|November 20, 2024
Melt processing of chemically modified cellulosic fibres with only water as plasticiser: Effects of moisture content and processing temperatureEmile R Engel, Giada Lo Re, Per A LarssonCarbohydrate Polymers|November 1, 2024
On the determination of charge and nitrogen content in cellulose fibres modified to contain quaternary amine functionalityJohanna Sjölund, Gunnar Westman, Lars Wågberg, et al.Carbohydrate Polymers|March 13, 2021
On the interaction between PEDOT:PSS and cellulose: Adsorption mechanisms and controlling factorsKarishma Jain, Michael S Reid, Per A Larsson, et al.Pageof 3