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Results 1 to 25 of 23941

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Powdered cellulose as excipient for extrusion-spheronization pellets of a cohesive hydrophobic drugALVAREZ, Lisardo; CONCHEIRO, Angel; GOMEZ-AMOZA, José Luis et al.European journal of pharmaceutics and biopharmaceutics. 2003, Vol 55, Num 3, pp 291-295, issn 0939-6411, 5 p.Article

Enhanced enzymatic hydrolysis of cellulose by partial modification of its chemical structureSHAIKH, H. M; ADSUL, M. G; GOKHALE, D. V et al.Carbohydrate polymers. 2011, Vol 86, Num 2, pp 962-968, issn 0144-8617, 7 p.Article

Facile grafting of bioactive cellulose derivatives onto PVC surfacesBIGOT, Sandra; LOUARN, Guy; KEBIR, Nasreddine et al.Applied surface science. 2013, Vol 283, pp 411-416, issn 0169-4332, 6 p.Article

Dielectric properties of ethyl cellulose and ethyl-cellulose acrylic acid systemJAIN, S. K; KHARE, P. K.International symposium on electrets. 1999, pp 343-346, isbn 0-7803-5025-1Conference Paper

Bacterial cellulose scaffolds and cellulose nanowhiskers for tissue engineeringDUGAN, James M; GOUGH, Julie E; EICHHORN, Stephen J et al.Nanomedicine (London. Print). 2013, Vol 8, Num 2, pp 287-298, issn 1743-5889, 12 p.Article

Preparation and characterization of novel oxidized cellulose acetate methyl estersYANG, D; KUMAR, V.Carbohydrate polymers. 2012, Vol 90, Num 4, pp 1486-1493, issn 0144-8617, 8 p.Article

Thermophilic H2 production from a cellulose-containing wastewaterHONG LIU; TONG ZHANG; FANG, Herbert H. P et al.Biotechnology letters. 2003, Vol 25, Num 4, pp 365-369, issn 0141-5492, 5 p.Article

Methodological analysis for determination of enzymatic digestibility of cellulosic materialsZHANG, Y.-H. Percival; SCHELL, Daniel J; MCMILLAN, James D et al.Biotechnology and bioengineering. 2007, Vol 96, Num 1, pp 188-194, issn 0006-3592, 7 p.Article

Enzymatic hydrolysis of cellulose and the use of TiO2 nanoparticles to open up the cellulose structureABUSHAMMALA, H; HASHAIKEH, R.Biomass & bioenergy. 2011, Vol 35, Num 9, pp 3970-3975, issn 0961-9534, 6 p.Article

Degradation of Cellulose Nitrate AdhesiveSHASHOUA, Y; BRADLEY, S. M; DANIELS, V. D et al.Studies in conservation. 1992, Vol 37, Num 2, pp 113-119, issn 0039-3630Article

NEW VISCOSITY METHOD FOR ESTIMATING UNPERTURBED CHAINS DIMENSIONS OF MACROMOLECULES WHEN DRAINING EFFECT AND/OR NON GAUSSIAN NATURE IN THE UNPERTURBED STATE ARE NOT NEGLIGIBLEKAMIDE K; SAITOH M.1981; EUR. POLYM. J.; ISSN 0014-3057; GBR; DA. 1981; VOL. 17; NO 10; PP. 1049-1055; BIBL. 46 REF.Article

LOESLICHE ANIONISCHE CELLULOSE-DERIVATE UND IHRE KOMPLEX-BILDUNG MIT KATIONISCHEN POLYELEKTROLYTEN = DERIVES ANIONIQUES SOLUBLES DE LA CELLULOSE ET LA FORMATION DE COMPLEXES AVEC LES POLYELECTROLYTES CATIONIQUESPHILIPP B; LINOW KJ; SCHLEICHER H et al.1981; PAPIER (DARMST.); ISSN 0031-1340; DEU; DA. 1981; VOL. 35; NO 12; PP. 570-577; BIBL. 15 REF.Article

LIQUID CRYSTAL FORMATION IN CELLULOSE AND CELLULOSE DERIVATIVESGILBERT RD; PATTON PA.1983; PROGRESS IN POLYMER SCIENCE; ISSN 0079-6700; GBR; DA. 1983; VOL. 9; NO 2-3; PP. 115-131; BIBL. 71 REF.Article

PERSISTENCE LENGTH OF CELLULOSE AND CELLULOSE DERIVATIVES IN SOLUTIONKAMIDE K; SAITO M; SUZUKI H et al.1983; MAKROMOLEKULARE (DIE) CHEMIE. RAPID COMMUNICATIONS; ISSN 0173-2803; CHE; DA. 1983; VOL. 4; NO 1; PP. 33-39; BIBL. 34 REF.Article

Screening for novel bacteria from the bioenergy feedstock switchgrass (Panicum virgatum L.) : Sustainable Technologies: Bioenergy and Biofuel from Biowaste and Biomass. Part II. Research and Technological AdvancesPLECHA, Sarah; HALL, Danielle; TIQUIA-ARASHIRO, Sonia M et al.Environmental technology. 2013, Vol 34, Num 13-16, pp 1895-1904, issn 0959-3330, 10 p.Article

Investigation of curing kinetics of sodium carboxymethyl cellulose/epoxy resin system by differential scanning calorimetryJIN ZHANG; HONGXING DONG; LILI TONG et al.Thermochimica acta. 2012, Vol 549, pp 63-68, issn 0040-6031, 6 p.Article

Nanostructured composite materials reinforced with nature-based cellulose nanofibresVARGAS, G; TRIFOL, J; ALGAR, I et al.Transactions on ecology and the environment. 2012, Vol v. 160, pp 237-247, issn 1746-448X, isbn 978-1-8456-4592-2, 1Vol, 11 p.Conference Paper

POLYMERES HYDROSOLUBLES A BASE D'ETHERS DE CELLULOSEPROKOF'EVA MV; KHIN NN; SMIRNOVA GN et al.1982; PLAST. MASSY; ISSN 0554-2901; SUN; DA. 1982; NO 9; PP. 13-14; BIBL. 8 REF.Article

SEDIMENTATION OF CELLULOSE AND CELLULOSE DERIVATIVES IN DILUTE SOLUTIONNYSTROM B.1978; CHEM. SCRIPTA; SWE; DA. 1978-1979; VOL. 13; NO 5; PP. 170-177; BIBL. 77 REF.Article

Investigation on surface activity of cyclodextrins grafting cellulose beads through phenolphthalein probe moleculeTING WANG; BIN LI; HONGYAN SI et al.Surface and interface analysis. 2011, Vol 43, Num 12, pp 1532-1538, issn 0142-2421, 7 p.Article

A solubilized cellulose fiber decreases peak postprandial cholecystokinin concentrations after a liquid mixed meal in hypercholesterolemic men and womenGELEVA, Daniela; THOMAS, William; GANNON, Mary C et al.The Journal of nutrition. 2003, Vol 133, Num 7, pp 2194-2203, issn 0022-3166, 10 p.Article

13C-NMR study of cellulose derivatives in the solid stateHOSHINO, M; TAKAI, M; FUKUDA, K et al.Journal of polymer science. Part A. Polymer chemistry. 1989, Vol 27, Num 6, pp 2083-2092, issn 0887-624XArticle

Thermoanalytische Möglichkeiten zur Charakterisierung von Cellulose und Cellulose-derivaten = Possibilités thermoanalytiques sur la caractérisation de la cellulose et de dérivés cellulosiques = Thermoanalytic possibilities on characterization of cellulose and cellulose derivatesHORBACH, A.Das Papier (Darmstadt). 1987, Vol 41, Num 12, pp 652-657, issn 0031-1340Article

Surface characterization of TEMPO-oxidized bacterial celluloseCHEN LAI; LIYUAN SHENG; SHIBO LIAO et al.Surface and interface analysis. 2013, Vol 45, Num 11-12, pp 1673-1679, issn 0142-2421, 7 p.Article

Role of endo-1,4-β-glucanases from Neisseria sicca SB in synergistic degradation of cellulose acetateMORIYOSHI, Kunihiko; OHMOTO, Takashi; OHE, Tatsuhiko et al.Bioscience, biotechnology, and biochemistry. 2003, Vol 67, Num 2, pp 250-257, issn 0916-8451, 8 p.Article

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