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Green nanocomposites

Above we have shown the attractiveness of the so-called green nanocomposites, although the research on these materials can still be considered to be in an embryonic phase. It can be expected that diverse nano- or micro-particles of silica, silicates, LDHs and carbonates could be used as ecological and low cost nanofillers that can be assembled with polysaccharides and other biopolymers. The controlled modification of natural polymers can alter the nature of the interactions between components, affording new formulations that could lead to bioplastics with improved mechanical and barrier properties. [Pg.31]

Cheng Q (2010) Green nanocomposites reinforced with cellulosic crystals isolated from juvenile poplar. In Proceedings International Convention of Society of Wood Science and Technology and United Nations Economic Commission for Europe - Timber Committee October 11-14, Geneva, Switzerland, Paper NT-6 1... [Pg.169]

PAN 05] Pandey J.K., Singh R.P., Green nanocomposites fiom renewable resources effect of plasticizer on the structure and material properties of clay-filled starch , Starch-Starke, vol. 57, no. 1, pp. 8-15,2005. [Pg.197]

Park, H.-M., Misra, M., Drzal, L.T and Mohanty, A.K. (2004) Green nanocomposites from cellulose acetate bioplastic and clay effect of eco-friendly triethyl citrate plasticizer. Biomacromolecules, 5,2281-2288. [Pg.62]

Tsujimoto, X, Kuwabara, M., Uyama, H. et al. (2010) Preparation and properties of green nanocomposites from epoxidized triglycerides and a modified clay. Nippon Setchaku Gakkaishi, 46(4), 131-136. [Pg.134]

The bio-related resin polylactic acid is well known as a renewable material. However, renewable materials such as this lack the mechanical and thermal properties to be of any practical use. hi order to overcome these drawbacks, the synthesis of clay nanocomposites based on renewable materials has been discussed. These materials are known as Green Nanocomposites [44] and are now forming a new sector in materials studies. [Pg.192]

G. Das and N. Karak, Epoxidized Mesuaferrea L. seed oil-based reactive diluent for BPA epoxy resin and their green nanocomposites . Prog Org Coat, 2009,66, 59-64. [Pg.205]

H. Uyama, M. Kuwabara, T. Tsujimoto, M. Nakano, A. Usuki and S. Kobayashi, Green nanocomposites from renewable resources Plant oil-clay hybrid materials , Chem Mater, 2003,15,2492-4. [Pg.308]

Green Nanocomposites from Renewable Resource-Based Biodegradable Polymers and Environmentally-Friendly Blends... [Pg.403]

Green Nanocomposites from Renewable Resources 415 Table 11.2 WAXD datas of pristine nanoclays and nanocomposites [33]... [Pg.415]


See other pages where Green nanocomposites is mentioned: [Pg.1]    [Pg.3]    [Pg.15]    [Pg.22]    [Pg.126]    [Pg.377]    [Pg.377]    [Pg.378]    [Pg.140]    [Pg.136]    [Pg.192]    [Pg.198]    [Pg.217]    [Pg.33]    [Pg.304]    [Pg.306]    [Pg.306]    [Pg.401]    [Pg.405]    [Pg.407]    [Pg.409]    [Pg.411]    [Pg.413]    [Pg.417]    [Pg.419]    [Pg.421]    [Pg.425]    [Pg.427]    [Pg.429]    [Pg.431]    [Pg.433]    [Pg.435]    [Pg.437]    [Pg.439]    [Pg.441]   
See also in sourсe #XX -- [ Pg.140 ]

See also in sourсe #XX -- [ Pg.192 ]

See also in sourсe #XX -- [ Pg.477 ]




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Biobased Green Nanocomposites

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