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Titlebook: Handbook of Polymer Nanocomposites. Processing, Performance and Application; Volume C: Polymer Na Jitendra K. Pandey,Hitoshi Takagi,Hyun-Jo

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Extraction and Production of Cellulose Nanofibers,rong mechanical treatment that imposes high shear forces to cellulose fibers allows the extraction of microfibrils and microfibril aggregates with high aspect ratio which form highly entangled networks. This kind of nanocellulose is called microfibrillated cellulose (MFC). Although widely used the m
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Chitin Nanofibers: Preparations, Modifications, and Applications, reinforcement of resins with chitin nanofibers. Chitin nanofiber showed chiral separation ability as well. Chitin nanofiber membrane transported the D-isomer of glutamic acid, phenylalanine, and lysine from the corresponding racemic amino acid mixtures faster than L-isomer. From the viewpoint of me
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Dispersion of Nanocellulose (NC) in Polypropylene (PP) and Polyethylene (PE) Matrix, by the proper dispersion of NC inside polymer. Because of their highly hydrophilic nature, it is always a challenge to mix NC with hydrophobic polymer matrixes such as PP and PE. The present chapter is aimed to discuss the dispersion of NC in PP and PE matrix and associated challenges with brief de
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Poly(vinyl Alcohol)-Cellulose and Nanocellulose Composites, methods and properties such as thermal gravimetric analysis (TGA), differential scanning calorimetry (DSC), mechanical performances, dynamic mechanical analysis (DMA), and membrane properties are also presented.
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Polymer Nanofibers Reinforced with Cellulose Nanocrystals,al behaviors of polymer nanofibers, such as glass transition temperatures and melting enthalpies. Increases in tensile strength, Young’s modulus, and elastic modulus have been demonstrated from mechanical studies of the nanocomposite fibers containing CNCs.
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Enzymatically Produced Nano-ordered Elements Containing Cellulose I, Crystalline Domains of , Celluising two crystalline allomorphs of cellulose, Iα and Iβ. In this method, the key issue was the selective removal of cellulose Iα phases by preferential hydrolysis of . cellulase [.]. This selective hydrolysis process provided short elements having nanoscaled width. X-ray diffraction, electron diffr
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Nanocrystalline Cellulose from Coir Fiber: Preparation, Properties, and Applications,terial can be considered as a potential source of a nanocrystalline material, including crops, crop residues, and agroindustrial wastes. Because of the variability in cellulose source and methods of preparation, nanocellulosic materials of variable structure, property, and application could be obtai
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