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Bacterial cellulose/poly nanocomposites

Leitao, A. R, Silva, J. R, Dourado, E, and Gama, M. (2013). Production and characterization of a new bacterial cellulose/poly(vinyl alcohol) nanocomposite. Material 6,1956-1966. [Pg.531]

Gea S, Bilotti E, Reynolds CT, Soykeabkeaw N, Peijs T (2010) Bacterial cellulose-poly(vinyl alcohol) nanocomposites prepared by an in-situ process. Mater Lett 64 901-904... [Pg.242]

Brown EE, Laborie MPG (2007) Bioengineering bacterial cellulose/poly(ethylene oxide) nanocomposites. Biomacromolecules 8 3074-3081... [Pg.579]

Lee KY, Bharadia P, Blaker JJ, Bismarck A (2012c) Short sisal fibre reinforced bacterial cellulose polylactide nanocomposites using hairy sisal fibres as reinforcement. Compos A 43 2065-2074 Lei Y, Wu Q (2010) Wood plastic composites based on microfibrillar blends of high density polyethylene/poly(ethylene terephthalate). Bioresour Technol 101 3665-3671 Liu D, Zhong T, Chang PR, Li K, Wu Q (2010) Starch composites reinforced by bamboo cellulosic crystals. Bioresour Technol 101 2529-2536 Liu H, Xie F, Yu L, Chen L, Li L (2009) Thermal processing of starch-based polymers. Prog Polym Sci 34 1348-1368... [Pg.491]

Indriyati, L., Yudianti, R., and Karina, M. (2012). Development of nanocomposites from bacterial cellulose and poly(vinyl alcohol) using casting-drying method, Proce g Qigjj, 4,73-79. [Pg.531]

Wan, W.K., Millon, L.E. Poly(vinyl alcohol)-bacterial cellulose nanocomposite U.S. Patent AppL, Publ. US 2005037082 Al, 16 (2005)... [Pg.15]

In a recent original contribution to this topic. Brown and Laborie [41] prepared finely dispersed nanocomposites of bacterial cellulose in poly(ethylene oxide) by introducing the latter polymer in the former growth mediura This integrated manufacturing approach opens a novel promising route to fibre-reinforced nanocomposites based on bacterial cellulose. [Pg.381]

Mohammadi H, Boughner D, Millon LE, Wan WK (2009) Design and simulation of a poly (vinyl alcohol)-bacterial cellulose nanocomposite mechanical aortic heart valve prosthesis. Proc Inst Mech Eng H 223 697-711... [Pg.320]

Extrusion and impregnation, electrospinning, and multilayer films are other processes applicable for reinforced nanocomposites. Thus, preparation of cellulose whiskers reinforced with polylactic acid nanocomposites (by melt extrusion carried out by pumping the suspension of nanocrystals into the polymer melt during the extrusion process), using polyvinyl alcohol as a compatibilizer for the dispersion of cellulose whiskers within the polylactic acid matrix, was reported (de Menezes et al. 2009) bacterial cellulose whiskers incorporated into poly(oxyethylene) nanofibers by electrospinn to enhance the mechanical properties of electrospun fibers (Peresin et al. 2010) or the use of the layer-by-layer assembly technique, which maximizes the interaction between cellulose whiskers and a polar polymeric matrix (Bruno et al. 2009 Aulin et al. 2010), are some examples of nanocomposites reinforced by the last three methods. [Pg.102]

Cho M, Park B (2011) Tensile and thermal properties of nanocellulose-reinforced poly (vinyl alcohol) nanocomposites. J Ind Eng Chem 17 36-40 Ciechanska D (2004) Multifunctional bacterial cellulose/chitosan composite materials for medical applications. Fibres Text East Eur 12 69-72... [Pg.554]

Zhijiang C, Guang Y. Optical nanocomposites prepared by incorporating bacterial cellulose nanofibrils into poly(3-hydroxybutyrate). Mater Lett 2011 65 182-4. [Pg.284]

Dong XM, Revol J-F, Gray DG (1998) Effect of microcrystallite preparation conditions on the formation of colloid crystals of cellulose. Cellulose 5 19-32 Dubief D, Samain E, Dufresne A (1999) Polysaccharide microcrystals reinforced amorphous poly (beta-hydroxyoctanoate) nanocomposite materials. Macromolecules 32 5765-5771 Dufresne A (2000) Dynamic mechanical analysis of the interphase in bacterial polyester/cellulose whiskers natural composites. Compos Interfaces 7 53-67 Dufresne A (2006) Comparing the mechanical properties of high performance polymer nanocomposites from biological sources. J Nanosci Nanotechnol 6 322-330 Dufresne A, Vignon MR (1998) Improvement of starch film performances using cellulose microfibrils. Macromolecules 31 2693-2696... [Pg.208]


See other pages where Bacterial cellulose/poly nanocomposites is mentioned: [Pg.563]    [Pg.41]    [Pg.52]    [Pg.192]    [Pg.211]    [Pg.562]    [Pg.581]    [Pg.22]    [Pg.23]    [Pg.127]    [Pg.138]    [Pg.183]    [Pg.186]    [Pg.383]    [Pg.117]    [Pg.186]   
See also in sourсe #XX -- [ Pg.563 ]




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