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Polymer-graphene nanocomposite

Polymer-graphene nanocomposites as ultrafast-charge and -discharge cathodes for rechargeable lithium batteries. Nano Lett. 12,2205-2211. [Pg.239]

Towards Efficient Designing of Safe Nanomaterials Innovative Merge of Computational Approaches and Experimental Techniques 26 Polymer-Graphene Nanocomposites... [Pg.2]

Mittal Vikas. Polymer-graphene nanocomposites. Dorchester Royal Society of Chemistry, 2012. [Pg.230]

Mittal Vikas, and Chaudhry Ali Usman. Polymer - graphene nanocomposites Effect of polymer matrix and filler amount on properties. Macromol. Mater. Eng. 300 no. 5 (2015) 510-521. [Pg.230]

Shen B., Zhai W., Lu, D., Zheng W., and Yan Q., Fabrication of microcellular polymer/ graphene nanocomposite foams. Polymer International 2012, 61, 1693-1702. [Pg.32]

J. Baselga, Interphases in graphene polymer-based nanocomposites Achievements and challenges., Advanced Materials, vol. 23, pp. 5302-5310, 2011. [Pg.116]

FT-IR is a powerful and reliable technique for description of chemical characterization of graphene and also study of the structure and properties relationships in PVDF/PMMA/graphene polymer blend nanocomposite. The interactions between these three components including PVDF, PMMA and graphene sheets can be revealed and described by using this technique. As well, exploration of PVDF chains conformations (crystalline structures) are affected by presence of graphene sheets and PMMA chains can be done which is very important in order to design the new material with special properties. [Pg.216]

To identify the nature of the interactions in the polymer blend nanocomposite, we choose the band at 1720 cm i which is due to the stretching vibration of the C=0 group in PMMA as a characteristic peak of PMMA. This band shows a little shift to the higher frequencies and has become broader in both of the polymer blend with no graphen and nanocomposites. These changes can be ascribed by the interaction between PMMA and PVDF chains (I. S. Elashmawi, 2008 M. M. Colemann, 1995). [Pg.222]

Fig. 7. TEM image and Wrinkled surface of graphene sheets in 70 30 polymer blend nanocomposite (S. Mohamadi, 2011)... Fig. 7. TEM image and Wrinkled surface of graphene sheets in 70 30 polymer blend nanocomposite (S. Mohamadi, 2011)...
Mohamadi. S., Sharifi-Sanjani, N., (2011) Investigation of the crystalline structure of PVDF in PVDF/PMMA/Graphene polymer blend nanocomposites. Polymer Composites, Vol. 32, pp. 1451-1460, ISSN 0272-8397. [Pg.230]

R Saini, M. Arora, Microwave Absorption and EMI Shielding Behavior of Nanocomposites Based on Intrinsically Conducting Polymers, Graphene and Carbon Nanotubes. In New Polymers for Special Applications De Souza A. Gomes, Ed. InTech Croatia, 2012 pp. 71-112. [Pg.81]


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See also in sourсe #XX -- [ Pg.224 ]




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