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Characterization of cellulose nanofibrillation by micro grindingNAIR, Sandeep S; ZHU, J. Y; YULIN DENG et al.Journal of nanoparticle research. 2014, Vol 16, Num 4, issn 1388-0764, 2349.1-2349.10Article

NEW CHITIN COMPLEXES AND THEIR ANTI-AGING ACTIVITY FROM INSIDE OUTMORGANTI, P; FABRIZI, G; PALOMBO, P et al.The Journal of nutrition, health & aging. 2012, Vol 16, Num 3, pp 242-245, issn 1279-7707, 4 p.Article

Nanofibril reinforced composites from polymer blendsFAKIROV, S; BHATTACHARYYA, D; SHIELDS, R. J et al.Colloids and surfaces. A, Physicochemical and engineering aspects. 2008, Vol 313-314, pp 2-8, issn 0927-7757, 7 p.Conference Paper

Comparative effect of mechanical beating and nanofibrillation of cellulose on paper properties made from bagasse and softwood pulpsAFRA, Elyas; YOUSEFI, Hossein; MOHAMAD MAHDI HADILAM et al.Carbohydrate polymers. 2013, Vol 97, Num 2, pp 725-730, issn 0144-8617, 6 p.Article

Simple preparation method of chitin nanofibers with a uniform width of 10―20 nm from prawn shell under neutral conditionsIFUKU, Shinsuke; NOGI, Masaya; ABE, Kentaro et al.Carbohydrate polymers. 2011, Vol 84, Num 2, pp 762-764, issn 0144-8617, 3 p.Conference Paper

TEMPO-oxidized cellulose nanofibrils prepared from various plant holocelluloses : Renewable Nanoreinforcements, Polymers and CompositesKURAMAE, Ryota; SAITO, Tsuguyuki; ISOGAI, Akira et al.Reactive & functional polymers. 2014, Vol 85, pp 126-133, issn 1381-5148, 8 p.Article

Nanofibrillation of Wood Pulp Using a High-Speed BlenderUETANI, Kojiro; YANO, Hiroyuki.Biomacromolecules. 2011, Vol 12, Num 2, pp 348-353, issn 1525-7797, 6 p.Article

Fabrication of cationic cellulosic nanofibrils through aqueous quaternization pretreatment and their use in colloid aggregationLIIMATAINEN, Henrikki; SUOPAJÄRVI, Terhi; SIRVIÖ, Juho et al.Carbohydrate polymers. 2014, Vol 103, pp 187-192, issn 0144-8617, 6 p.Article

Increase in enzyme accessibility by generation of nanospace in cell wall supramolecular structureLEE, Seung-Hwan; FUXIANG CHANG; INOUE, Seiichi et al.Bioresource technology. 2010, Vol 101, Num 19, pp 7218-7223, issn 0960-8524, 6 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

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

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

Fibrinogen Nanofibril Growth and Self-Assembly on Au (1,1,1) Surface in the Absence of ThrombinGUOJUN CHEN; NANTING NI; BINGHE WANG et al.ChemPhysChem (Print). 2010, Vol 11, Num 3, pp 565-568, issn 1439-4235, 4 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

Nanofibrillar Single Polymer Composites of Poly(ethylene terephthalate)DUHOVIC, Miro; BHATTACHARYYA, Debes; FAKIROV, Stoyko et al.Macromolecular materials and engineering (Print). 2010, Vol 295, Num 2, pp 95-99, issn 1438-7492, 5 p.Article

Evaluation of the effects of chitin nanofibrils on skin function using skin modelsITO, Ikuko; OSAKI, Tomohiro; MINAMI, Saburo et al.Carbohydrate polymers. 2014, Vol 101, pp 464-470, issn 0144-8617, 7 p.Article

Morphology development from rod-like to nanofibrillar structures of dispersed poly (lactic acid) phase in a binary blend with poly (vinyl alcohol) matrix along the spinlineNGUYEN HOAI AN TRAN; BRIINIG, Harald; BOLDT, Regine et al.Polymer (Guildford). 2014, Vol 55, Num 24, pp 6354-6363, issn 0032-3861, 10 p.Article

Chitin Nanofibrils for Improved PhotoprotectionMORGANTI, Pierfrancesco; FABRIZI, Giuseppe; RUOCCO, Eleonora et al.Cosmetics and toiletries. 2009, Vol 124, Num 9, issn 0361-4387, 66-73 [5 p.]Article

Effects of residual lignin and heteropolysaccharides on the bioconversion of softwood lignocellulose nanofibrils obtained by SO2―ethanol―water fractionationMORALES, Luis O; IAKOVLEV, Mikhail; MARTIN-SAMPEDRO, Raquel et al.Bioresource technology. 2014, Vol 161, pp 55-62, issn 0960-8524, 8 p.Article

Nanofibrillated cellulose: surface modification and potential applicationsKALIA, Susheel; BOUFI, Sami; CELLI, Annamaria et al.Colloid and polymer science (Print). 2014, Vol 292, Num 1, pp 5-31, issn 0303-402X, 27 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

Beneficial and preventive effect of chitin nanofibrils in a dextran sulfate sodium-induced acute ulcerative colitis modelAZUMA, Kazuo; OSAKI, Tomohiro; WAKUDA, Takashi et al.Carbohydrate polymers. 2012, Vol 87, Num 2, pp 1399-1403, issn 0144-8617, 5 p.Article

From PET Nanofibrils to Nanofibrillar Single-Polymer CompositesFAKIROV, Stoyko; DUHOVIC, Miro; MAITROT, Philipp et al.Macromolecular materials and engineering (Print). 2010, Vol 295, Num 6, pp 515-518, issn 1438-7492, 4 p.Article

The enhanced anodic performance of highly crimped and crystalline nanofibrillar carbon in lithium-ion batteriesHYEON GU CHO; YOUNG JEON KIM; YUNG-EUN SUNG et al.Electrochimica acta. 2007, Vol 53, Num 2, pp 944-950, issn 0013-4686, 7 p.Article

The crystal modulus of silk (Bombyx mori)SINSAWAT, A; PUTTHANARAT, S; MAGOSHI, Y et al.Polymer (Guildford). 2003, Vol 44, Num 3, pp 909-910, issn 0032-3861, 2 p.Article

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