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Graphene materials

Pasricha, R., et al., Directed nanoparticle reduction on graphene. Materials Today, 2012. [Pg.167]

Han, S., Wu, D., Li, S., Zhang, E, Feng, X., 2014c. Porous graphene materials for advanced electrochemical energy storage and conversion devices. Adv. Mater. 26,849-864. [Pg.144]

Rang, L., Fan, Z., 2014. Design of advanced porous graphene materials from graphene nanomesh to 3D architectures. Nanoscale 6,1922-1945. [Pg.144]

Cao, X. H., Z. Y. Yin, and H. Zhang. 2014. Three-dimensional graphene materials Preparation, structures and application in supercapacitors. Energy Environmental Science 7 1850—1865. [Pg.25]

Graphene Material Covalently Functional with Indolizine... [Pg.329]

Wu, X., Cao, H., Li, B., Yin, G. (2011). The synthesis and fluorescence quenching properties of well soluble hybrid graphene material covalently functionalized with indolizine. Nanotechnology, 22, pp. 075202 (1-8). [Pg.355]

Scheme 7.3 Schematic representation of the hierarchically nanocomposite fabrication in situ polymerization of EDOT on 3D graphene material to form PEDOT/graphene, and subsequent growth of uniformly distributed LMO (LMO/PEDOT/graphene). Panel is reproduced with permission [49]. Copyright 2011, Wiley. Scheme 7.3 Schematic representation of the hierarchically nanocomposite fabrication in situ polymerization of EDOT on 3D graphene material to form PEDOT/graphene, and subsequent growth of uniformly distributed LMO (LMO/PEDOT/graphene). Panel is reproduced with permission [49]. Copyright 2011, Wiley.
Figure 7.6 Histograms of the thickness distribution of (a) graphene sheets in 3D graphene material and (b) PEDOT/graphene sheets. Element mapping images of (c)... Figure 7.6 Histograms of the thickness distribution of (a) graphene sheets in 3D graphene material and (b) PEDOT/graphene sheets. Element mapping images of (c)...
Fabrication of Nonvolatile Memory Devices Utilizing Graphene Materials Embedded in a Polymer Matrix... [Pg.451]

N-doped graphene was also studied as the ORR electrode material. Poly (diallyldimethylammonium chloride) PDDA, as nitrogen source, was introduced into a graphene material. It was observed that PDDA as a p-type dopant could cause the partial electron transfer from the electron-rich graphene substrate to the positively charged N+ centers of PDDA. Thus, carbon atoms in the graphene sheets with the adsorbed PDDA could create somewhat delocalized positive charges on the... [Pg.244]


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See also in sourсe #XX -- [ Pg.451 ]




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Carbon materials reduced graphene oxide

Carbon-based materials graphene

Fabrication of Nonvolatile Memory Devices Utilizing Graphene Materials Embedded in a Polymer Matrix

Graphene

Graphene composite materials

Graphene composite materials applications

Graphene material development

Graphene nanosheet oxide materials

Graphene-Based Materials Used as Electrodes in Ni-MH and Li-Ion Batteries

Graphene-carbon nanotube hybrid material preparation

Graphene-like Structures of Layered Inorganic Materials

Graphene-related materials

Graphenes

Liquid-Assisted Fabrication of Graphene-Based Electroactive Composite Materials

Materials graphene sheets

Materials graphene-based

Negative electrode materials graphene

Reduced Graphene Oxide-Based Hybrid Materials for High-Rate Lithium-Ion Batteries

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