Advances in Diverse Industrial Applns of Nanocomposites by B. Reddy

By B. Reddy

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G. (1996). Effects of ionic strength on the isotropic-chiral nematic phase transition of suspensions of cellulose crystallites. Langmuir, 12, 8, 2076-2082 Dong, X. ; Revol, J. F. & Gray, D. G. (1998). Effect of microcrystallite preparation conditions on the formation of colloid crystals of cellulose. ; Kellerhals, M. B. & Witholt, B. (1999). Transcrystallization in MclPHAs/cellulose whiskers composites. Macromolecules, 32, 22, 7396-7401 Eichhorn, S. ; Baillie, C. ; Mwaikambo, L. ; Ansell, M. ; et al.

Silva, G. G. (2005). A new composite from cellulose industrial waste and elastomeric polyurethane. ; Bras, J. & Dufresne, A. (2010). New Process of Chemical Grafting of Cellulose Nanoparticles with a Long Chain Isocyanate. ; Davies, G. R. & Eichhorn, S. J. (2005). Elastic modulus and stress-transfer properties of tunicate cellulose whiskers. Biomacromolecules, 6, 2, 1055-1061 Tang, L. M. & Weder, C. (2010). Cellulose Whisker/Epoxy Resin Nanocomposites. ; Chazeau, L. & Cavaille, J. Y. (1999).

Acknowledgement The authors would like to acknowledge the financial support from the PSE Fellowship program at IPST@GT. D. at Georgia Institute of Technology. 7. References Alexandre M. & Dubois P. (2000) Polymer-layered silicate nanocomposites: preparation, properties and uses of a new class of materials. Materials science and engineering. R, 28, 1, 1-63 Angles, M. N. & Dufresne, A. (2000). Plasticized starch/tunicin whiskers nanocomposites. 1. Structural analysis. ; Kuga, S. & Okano, T. (1998).

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