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Suvi Arola

Showing results (1-10 of 13) with videos related to

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Scientific Reports|October 18, 2016
Binding of cellulose binding modules reveal differences between cellulose substratesSuvi Arola, Markus B Linder
Biochemistry and Biophysics Reports|April 28, 2020
Different effects of carbohydrate binding modules on the viscoelasticity of nanocellulose gelsBart J M Rooijakkers, Suvi Arola, Rama Velagapudi, et al.
Biomacromolecules|January 18, 2012
Immobilization-stabilization of proteins on nanofibrillated cellulose derivatives and their bioactive film formationSuvi Arola, Tekla Tammelin, Harri Setälä, et al.
Carbohydrate Polymers|June 26, 2023
Tuning the water interactions of cellulose nanofibril hydrogels using willow bark extractNgoc Huynh, Juan José Valle-Delgado, Wenwen Fang, et al.
Langmuir : the ACS Journal of Surfaces and Colloids|September 6, 2018
Interfacial Behavior of Recombinant Spider Silk Protein Parts Reveals Cues on the Silk Assembly MechanismLinnea Nilebäck, Suvi Arola, Mathias Kvick, et al.
Soft Matter|November 14, 2018
The sol-gel transition of ultra-low solid content TEMPO-cellulose nanofibril/mixed-linkage β-glucan bionanocomposite gelsSuvi Arola, Mahmoud Ansari, Antti Oksanen, et al.
Journal of Materials Chemistry. B|September 5, 2023
Bioinspired mechanically stable all-polysaccharide based scaffold for photosynthetic productionTuuli Virkkala, Sergey Kosourov, Ville Rissanen, et al.
Biomacromolecules|February 25, 2016
Noncovalent Dispersion and Functionalization of Cellulose Nanocrystals with Proteins and PolysaccharidesWenwen Fang, Suvi Arola, Jani-Markus Malho, et al.
Angewandte Chemie (International Ed. in English)|August 26, 2015
Modular architecture of protein binding units for designing properties of cellulose nanomaterialsJani-Markus Malho, Suvi Arola, Päivi Laaksonen, et al.
Biomacromolecules|September 22, 2020
<i>In Vitro</i> Synthesis and Self-Assembly of Cellulose II Nanofibrils Catalyzed by the Reverse Reaction of <i>Clostridium thermocellum</i> Cellodextrin PhosphorylaseRobert Pylkkänen, Pezhman Mohammadi, Suvi Arola, et al.
Pageof 2

Showing results (1-10 of 13) with videos related to

Sort By:
Pageof 2
Scientific Reports|October 18, 2016
Binding of cellulose binding modules reveal differences between cellulose substratesSuvi Arola, Markus B Linder
Biochemistry and Biophysics Reports|April 28, 2020
Different effects of carbohydrate binding modules on the viscoelasticity of nanocellulose gelsBart J M Rooijakkers, Suvi Arola, Rama Velagapudi, et al.
Biomacromolecules|January 18, 2012
Immobilization-stabilization of proteins on nanofibrillated cellulose derivatives and their bioactive film formationSuvi Arola, Tekla Tammelin, Harri Setälä, et al.
Carbohydrate Polymers|June 26, 2023
Tuning the water interactions of cellulose nanofibril hydrogels using willow bark extractNgoc Huynh, Juan José Valle-Delgado, Wenwen Fang, et al.
Langmuir : the ACS Journal of Surfaces and Colloids|September 6, 2018
Interfacial Behavior of Recombinant Spider Silk Protein Parts Reveals Cues on the Silk Assembly MechanismLinnea Nilebäck, Suvi Arola, Mathias Kvick, et al.
Soft Matter|November 14, 2018
The sol-gel transition of ultra-low solid content TEMPO-cellulose nanofibril/mixed-linkage β-glucan bionanocomposite gelsSuvi Arola, Mahmoud Ansari, Antti Oksanen, et al.
Journal of Materials Chemistry. B|September 5, 2023
Bioinspired mechanically stable all-polysaccharide based scaffold for photosynthetic productionTuuli Virkkala, Sergey Kosourov, Ville Rissanen, et al.
Biomacromolecules|February 25, 2016
Noncovalent Dispersion and Functionalization of Cellulose Nanocrystals with Proteins and PolysaccharidesWenwen Fang, Suvi Arola, Jani-Markus Malho, et al.
Angewandte Chemie (International Ed. in English)|August 26, 2015
Modular architecture of protein binding units for designing properties of cellulose nanomaterialsJani-Markus Malho, Suvi Arola, Päivi Laaksonen, et al.
Biomacromolecules|September 22, 2020
<i>In Vitro</i> Synthesis and Self-Assembly of Cellulose II Nanofibrils Catalyzed by the Reverse Reaction of <i>Clostridium thermocellum</i> Cellodextrin PhosphorylaseRobert Pylkkänen, Pezhman Mohammadi, Suvi Arola, et al.
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