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Nanocellulose in biomedicine: Current status and future prospectNING LIN; DUFRESNE, Alain.European polymer journal. 2014, Vol 59, pp 302-325, issn 0014-3057, 24 p.Article

Influence of drying method on the surface energy of cellulose nanofibrils determined by inverse gas chromatographyYUCHENG PENG; GARDNER, Douglas J; YOUSOO HAN et al.Journal of colloid and interface science. 2013, Vol 405, pp 85-95, issn 0021-9797, 11 p.Article

Green composites from sustainable cellulose nanofibrils: A reviewABDUL KHALIL, H. P. S; BHAT, A. H; IREANA YUSRA, A. F et al.Carbohydrate polymers. 2012, Vol 87, Num 2, pp 963-979, issn 0144-8617, 17 p.Article

1D and 2D NMR of nanocellulose in aqueous colloidal suspensionsFENG JIANG; DALLAS, Jerry L; AHN, B. Kollbe et al.Carbohydrate polymers. 2014, Vol 110, pp 360-366, issn 0144-8617, 7 p.Article

Microfibrillated cellulose from the peel of prickly pear fruitsHABIBI, Youssef; MAHROUZ, Mostafa; VIGNON, Michel R et al.Food chemistry. 2009, Vol 115, Num 2, pp 423-429, issn 0308-8146, 7 p.Article

Nanocellulose properties and applications in colloids and interfacesSALAS, Carlos; NYPELÖ, Tiina; RODRIGUEZ-ABREU, Carlos et al.Current opinion in colloid & interface science. 2014, Vol 19, Num 5, pp 383-396, issn 1359-0294, 14 p.Article

Superior effect of TEMPO-oxidized cellulose nanofibrils (TOCNs) on the performance of cellulose triacetate (CTA) ultrafiltration membraneLINLIN KONG; DALUN ZHANG; ZIQIANG SHAO et al.Desalination (Amsterdam). 2014, Vol 332, pp 117-125, issn 0011-9164, 9 p.Article

Significance of xylan on the stability and water interactions of cellulosic nanofibrils : Renewable Nanoreinforcements, Polymers and CompositesTENHUNEN, Tiia-Maria; PERESIN, Maria Soledad; PENTTILÄ, Paavo A et al.Reactive & functional polymers. 2014, Vol 85, pp 157-166, issn 1381-5148, 10 p.Article

Extraction of cellulose nanofibrils from dry softwood pulp using high shear homogenizationJIANGQI ZHAO; WEI ZHANG; XIAODAN ZHANG et al.Carbohydrate polymers. 2013, Vol 97, Num 2, pp 695-702, issn 0144-8617, 8 p.Article

Influence of cellulose nanofibrils on soft and hard segments of polyurethane/cellulose nanocomposites and effect of humidity on their mechanical propertiesSANCHES, Alex Otávio; SILIANO RICCO, Luciano Henrique; MALMONGE, Luiz Francisco et al.Polymer testing. 2014, Vol 40, pp 99-105, issn 0142-9418, 7 p.Article

TEMPO-oxidized cellulose nanofibril/poly(vinyl alcohol) composite drawn fibersENDO, Ryokei; SAITO, Tsuguyuki; ISOGAI, Akira et al.Polymer (Guildford). 2013, Vol 54, Num 2, pp 935-941, issn 0032-3861, 7 p.Article

Nanocomposite films based on cellulose nanofibrils and water-soluble polysaccharides : Renewable Nanoreinforcements, Polymers and CompositesLUCENIUS, Jessica; PARIKKA, Kirsti; ÖSTERBERG, Monika et al.Reactive & functional polymers. 2014, Vol 85, pp 167-174, issn 1381-5148, 8 p.Article

Reinforcement of all-cellulose nanocomposite films using native cellulose nanofibrilsJIANGQI ZHAO; XU HE; YARU WANG et al.Carbohydrate polymers. 2014, Vol 104, pp 143-150, issn 0144-8617, 8 p.Article

A comparative study of cellulose nanofibrils disintegrated via multiple processing approachesYAN QING; SABO, Ronald; ZHU, J. Y et al.Carbohydrate polymers. 2013, Vol 97, Num 1, pp 226-234, issn 0144-8617, 9 p.Article

Cellulose nanofibrils aerogels generated from jute fibersJINYOU LIN; LIANGBO YU; FENG TIAN et al.Carbohydrate polymers. 2014, Vol 109, pp 35-43, issn 0144-8617, 9 p.Article

Porous thin film barrier layers from 2,3-dicarboxylic acid cellulose nanofibrils for membrane structuresVISANKO, Miikka; LIIMATAINEN, Henrikki; SIRVIÖ, Juho Antti et al.Carbohydrate polymers. 2014, Vol 102, pp 584-589, issn 0144-8617, 6 p.Article

Chemically and mechanically isolated nanocellulose and their self-assembled structuresFENG JIANG; HSIEH, You-Lo.Carbohydrate polymers. 2013, Vol 95, Num 1, pp 32-40, issn 0144-8617, 9 p.Article

Green nanocomposites based on thermoplastic starch and steam exploded cellulose nanofibrils from wheat strawKAUSHIK, Anupama; SINGH, Mandeep; VERMA, Gaurav et al.Carbohydrate polymers. 2010, Vol 82, Num 2, pp 337-345, issn 0144-8617, 9 p.Article

Flexible, highly transparent and iridescent all-cellulose hybrid nanopaper with enhanced mechanical strength and writable surfaceRUI XIONG; YANGYANG HAN; YARU WANG et al.Carbohydrate polymers. 2014, Vol 113, pp 264-271, issn 0144-8617, 8 p.Article

Influence of Micro- and Nanonatural Fillers on Mechanical and Physical Properties of Foamed SMA CompositesAYDEMIR, Deniz; KIZILTAS, Alper; YOUSOO HAN et al.Polymer-plastics technology and engineering (Softcover ed). 2014, Vol 53, Num 15-17, pp 1825-1831, issn 0360-2559, 7 p.Article

Superabsorbent hydrogel composite made of cellulose nanofibrils and chitosan-graft-poly(acrylic acid)SPAGNOL, Cristiane; RODRIGUES, Francisco H. A; PEREIRA, Antonio G. B et al.Carbohydrate polymers. 2012, Vol 87, Num 3, pp 2038-2045, issn 0144-8617, 8 p.Article

Cassava bagasse cellulose nanofibrils reinforced thermoplastic cassava starchTEIXEIRA, Eliangela De M; PASQUINI, Daniel; CURVELO, Antônio A. S et al.Carbohydrate polymers. 2009, Vol 78, Num 3, pp 422-431, issn 0144-8617, 10 p.Article

Self-assembled films of cellulose nanofibrils and poly(o-ethoxyaniline)MEDEIROS, Eliton S; MATTOSO, Luiz H. C; BERNARDES-FILHO, Rubens et al.Colloid and polymer science (Print). 2008, Vol 286, Num 11, pp 1265-1272, issn 0303-402X, 8 p.Article

Influence of TEMPO-oxidized cellulose nanofibril length on film propertiesFUKUZUMI, Hayaka; SAITO, Tsuguyuki; ISOGAI, Akira et al.Carbohydrate polymers. 2013, Vol 93, Num 1, pp 172-177, issn 0144-8617, 6 p.Conference Paper

Cellulose nanofibrils as templates for the design of poly(ʟ-lactide)-nucleating surfacesFUJISAWA, Shuji; JIAQI ZHANG; SAITO, Tsuguyuki et al.Polymer (Guildford). 2014, Vol 55, Num 13, pp 2937-2942, issn 0032-3861, 6 p.Article

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