Submicron hierarchy of cellulose nanofibril films with etherified hemicelluloses.
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[1] M. Peresin,et al. Understanding the mechanisms of oxygen diffusion through surface functionalized nanocellulose films. , 2017, Carbohydrate polymers.
[2] Chao Liu,et al. Properties of Nanocelluloses and Their Application as Rheology Modifier in Paper Coating , 2017 .
[3] A. Naderi. Nanofibrillated cellulose: properties reinvestigated , 2017, Cellulose.
[4] Morsyleide de Freitas Rosa,et al. Nanocellulose in bio-based food packaging applications , 2017 .
[5] J. Bras,et al. Production of cellulose nanofibrils: A review of recent advances , 2016 .
[6] Ulla Forsström,et al. Fabrication of micropillars on nanocellulose films using a roll-to-roll nanoimprinting method , 2016 .
[7] Jun Liu,et al. Hemicellulose-reinforced nanocellulose hydrogels for wound healing application , 2016, Cellulose.
[8] Jaya Sundaram,et al. Antimicrobial and Physicochemical Characterization of Biodegradable, Nitric Oxide-Releasing Nanocellulose-Chitosan Packaging Membranes. , 2016, Journal of agricultural and food chemistry.
[9] L. Wågberg,et al. Towards natural-fibre-based thermoplastic films produced by conventional papermaking , 2016 .
[10] Tiina Nypelö,et al. Etherification of Wood-Based Hemicelluloses for Interfacial Activity. , 2016, Biomacromolecules.
[11] Jin Gu,et al. Holistic Rice Straw Nanocellulose and Hemicelluloses/Lignin Composite Films , 2016 .
[12] H. Sixta,et al. Simultaneous bench scale production of dissolving grade pulp and valuable hemicelluloses from softwood kraft pulp by ionic liquid extraction. , 2016, Carbohydrate polymers.
[13] M. Nogi,et al. Chemical Modification of Cellulose Nanofibers for the Production of Highly Thermal Resistant and Optically Transparent Nanopaper for Paper Devices. , 2015, ACS applied materials & interfaces.
[14] A. Potthast,et al. Analysis of degradation products in rayon spinning baths , 2015 .
[15] R. Serimaa,et al. Combination of internal and external plasticization of hydroxypropylated birch xylan tailors the properties of sustainable barrier films , 2015 .
[16] O. Rojas,et al. Water-resistant, transparent hybrid nanopaper by physical cross-linking with chitosan. , 2015, Biomacromolecules.
[17] L. Wågberg,et al. Improved barrier films of cross-linked cellulose nanofibrils: a microscopy study , 2014 .
[18] Canhui Lu,et al. Flexible, highly transparent and iridescent all-cellulose hybrid nanopaper with enhanced mechanical strength and writable surface. , 2014, Carbohydrate polymers.
[19] C. Rodríguez-Abreu,et al. Nanocellulose properties and applications in colloids and interfaces , 2014 .
[20] P. Eklund,et al. O-acetyl galactoglucomannan esters for barrier coatings , 2014, Cellulose.
[21] T. Tammelin,et al. Nanocellulose Films and Barriers , 2014 .
[22] Alain Dufresne,et al. Mechanical Performance and Transparency of Nanocellulose Reinforced Polymer Nanocomposites , 2014 .
[23] Y. Boluk,et al. Diffusion Behavior of Water at Infinite Dilution in Hydroxypropyl Xylan Films with Sorbitol and Cellulose Nanocrystals , 2014 .
[24] Seung‐Hwan Lee,et al. Mechanical properties of polypropylene composites reinforced by surface-coated microfibrillated cellulose , 2014 .
[25] H. Sehaqui,et al. Hydrophobic cellulose nanopaper through a mild esterification procedure , 2014, Cellulose.
[26] R. Serimaa,et al. Long-Term Physical Stability of Plasticized Hemicellulose Films , 2013 .
[27] Oeyvind Vaaland,et al. Transparent nanopaper with tailored optical properties. , 2013, Nanoscale.
[28] Daniele Passeri,et al. Mechanical characterization of polymeric thin films by atomic force microscopy based techniques , 2013, Analytical and Bioanalytical Chemistry.
[29] D. Panaitescu,et al. Morphology and thermal properties of PLA-cellulose nanofibers composites. , 2013, Carbohydrate polymers.
[30] I. Mondragon,et al. Conductive photoswitchable vanadium oxide nanopaper based on bacterial cellulose. , 2012, ChemSusChem.
[31] A. Dufresne. Nanocellulose: From Nature to High Performance Tailored Materials , 2012 .
[32] D. Plackett,et al. Properties of plasticized composite films prepared from nanofibrillated cellulose and birch wood xylan , 2012, Cellulose.
[33] Jasna S. Stevanic,et al. Arabinoxylan/nanofibrillated cellulose composite films , 2012, Journal of Materials Science.
[34] P. Gatenholm,et al. Flexible oxygen barrier films from spruce xylan , 2012 .
[35] R. Serimaa,et al. Arabinoxylan structure affects the reinforcement of films by microfibrillated cellulose , 2012, Cellulose.
[36] M. Österberg,et al. Interaction between water-soluble polysaccharides and native nanofibrillar cellulose thin films , 2011, BioResources.
[37] M. Tenkanen,et al. Interactions of structurally different hemicelluloses with nanofibrillar cellulose , 2011 .
[38] R. Sun,et al. Nanocomposite films based on xylan-rich hemicelluloses and cellulose nanofibers with enhanced mechanical properties. , 2011, Biomacromolecules.
[39] P. Heiden,et al. Chemical and nanomechanical analysis of rice husk modified by ATRP-grafted oligomer. , 2011, Journal of colloid and interface science.
[40] S. Chun,et al. Preparation of ultrastrength nanopapers using cellulose nanofibrils , 2011 .
[41] J. Ruokolainen,et al. Comparison of multilayer formation between different cellulose nanofibrils and cationic polymers. , 2011, Journal of colloid and interface science.
[42] E. Karabulut,et al. Design and characterization of cellulose nanofibril-based freestanding films prepared by layer-by-layer deposition technique , 2011 .
[43] A. Isogai,et al. Preparation and characterization of TEMPO-oxidized cellulose nanofibril films with free carboxyl groups , 2011 .
[44] Andong Liu,et al. Fast preparation procedure for large, flat cellulose and cellulose/inorganic nanopaper structures. , 2010, Biomacromolecules.
[45] Kristiina Oksman,et al. Glucomannan composite films with cellulose nanowhiskers , 2010 .
[46] Mikael Gällstedt,et al. Oxygen and oil barrier properties of microfibrillated cellulose films and coatings , 2010 .
[47] A. Paananen,et al. Hemicelluloses at Interfaces: Some Aspects of the Interactions , 2009 .
[48] Masaya Nogi,et al. Optically Transparent Nanofiber Paper , 2009 .
[49] Richard K. Johnson,et al. A new bio-based nanocomposite: fibrillated TEMPO-oxidized celluloses in hydroxypropylcellulose matrix , 2009 .
[50] Marielle Henriksson,et al. Cellulose nanopaper structures of high toughness. , 2008, Biomacromolecules.
[51] A. Albertsson,et al. Oxygen barrier materials from renewable sources: Material properties of softwood hemicellulose‐based films , 2006 .
[52] Paul Gatenholm,et al. Material properties of plasticized hardwood xylans for potential application as oxygen barrier films. , 2004, Biomacromolecules.
[53] P. Gatenholm,et al. Mechanism of Assembly of Xylan onto Cellulose Surfaces , 2003 .
[54] M. Tenkanen,et al. Sorption of dissolved galactoglucomannans and galactomannans to bleached kraft pulp , 2002 .
[55] P. Gatenholm,et al. Controlled Assembly of Glucuronoxylans onto Cellulose Fibres , 2001 .
[56] W. Glasser,et al. Thermoplastic Xylan Derivatives with Propylene Oxide , 2000 .
[57] B. Kasemo,et al. Viscoelastic Acoustic Response of Layered Polymer Films at Fluid-Solid Interfaces: Continuum Mechanics Approach , 1998, cond-mat/9805266.
[58] B. Kasemo,et al. Energy Dissipation Kinetics for Protein and Antibody−Antigen Adsorption under Shear Oscillation on a Quartz Crystal Microbalance , 1998 .
[59] Anna Sundheq,et al. Determination of hemicelluloses and pectins in wood and pulp fibres by acid methanolysis and gas chromatography , 1996 .
[60] Fredrik Höök,et al. Quartz crystal microbalance setup for frequency and Q‐factor measurements in gaseous and liquid environments , 1995 .
[61] Janne Laine,et al. A Fast Method to Produce Strong NFC Filmas as a Platform for Barrier and Functional Materials , 2016 .
[62] M. Peresin,et al. COMPARISON OF PROPERTIES BETWEEN CELLULOSE NANOFIBRILS MADE FROM BANANA, SUGAR BEET, HEMP, SOFTWOOD AND HARDWOOD PULPS , 2015 .
[63] Kristin Syverud,et al. Cellulose nanofibrils: Challenges and possibilities as a paper additive or coating material – A review , 2014 .
[64] Sari Hyvärinen,et al. Hydroxyalkylated xylans: Their synthesis and application in coatings for packaging and paper , 2013 .
[65] K. Tappura,et al. Interaction between Cellulose and Xylan An Atomic Force Microscope and Quartz Crystal Microbalance Study , 2004 .