The stabilization of reduced graphene oxide (RGO) sheets in aqueous dispersion using a wide range of surfactants of anionic, non-ionic and zwitterionic type has been investigated and compared under different conditions of pH, surfactant and RGO concentration, or sheet size. The observed differences in the performance of the surfactants were rationalized on the basis of their chemical structure (e.g., alkylic vs. aromatic hydrophobic tail or sulfonic vs. carboxylic polar head), thus providing a reference framework in the selection of appropriate surfactants for the processing of RGO suspensions towards particular purposes. RGO-surfactant composite paper-like films were also prepared through vacuum filtration of the corresponding mixed disper...
Graphene oxide (GO) can be enriched at the air–water interface by the adsorption of surfactant molec...
This study presents preliminary experimental data suggesting that sodium 4-(pyrene-1-yl)butane-1-su...
Graphene oxide (GO) flakes dissolved in water can spontaneously form liquid crystals. Liquid crystal...
This thesis focuses on aqueous dispersions of 2-dimensional carbon nanomaterials, surfactants, and s...
Performance of graphene nanoplatelets depends on its dispersion quality and level of homogeneity, to...
Keywords: graphene, aqueous dispersions, graphene dispersions, graphene colloids, non-covalent funct...
In this paper, we demonstrate an easy way to prepare a stable reduced graphene oxide (RGO) dispersio...
Ionic and non-ionic surfactant functionalized, water dispersible graphene were prepared to investiga...
This paper presents a unique synergistic behavior between a graphene oxide (GO) and graphene nanopla...
Those surfactants which are easily synthesized, eco-friendly, low cost, and able to produce high yie...
Graphene oxide (GO) is widely known as an amphiphile having hydrophilic oxygen functionality and uno...
Graphene oxide (GO) is widely known as an amphiphile having hydrophilic oxygen functionality and uno...
Graphene is widely touted as the thinnest and the most versatile material available. As an atomicall...
In this letter, we report a simple and unexpected method of producing polymer–graphene oxide (GO) co...
We designed a gradient solvent strategy for the reduction of graphene oxide, matching the hydrophili...
Graphene oxide (GO) can be enriched at the air–water interface by the adsorption of surfactant molec...
This study presents preliminary experimental data suggesting that sodium 4-(pyrene-1-yl)butane-1-su...
Graphene oxide (GO) flakes dissolved in water can spontaneously form liquid crystals. Liquid crystal...
This thesis focuses on aqueous dispersions of 2-dimensional carbon nanomaterials, surfactants, and s...
Performance of graphene nanoplatelets depends on its dispersion quality and level of homogeneity, to...
Keywords: graphene, aqueous dispersions, graphene dispersions, graphene colloids, non-covalent funct...
In this paper, we demonstrate an easy way to prepare a stable reduced graphene oxide (RGO) dispersio...
Ionic and non-ionic surfactant functionalized, water dispersible graphene were prepared to investiga...
This paper presents a unique synergistic behavior between a graphene oxide (GO) and graphene nanopla...
Those surfactants which are easily synthesized, eco-friendly, low cost, and able to produce high yie...
Graphene oxide (GO) is widely known as an amphiphile having hydrophilic oxygen functionality and uno...
Graphene oxide (GO) is widely known as an amphiphile having hydrophilic oxygen functionality and uno...
Graphene is widely touted as the thinnest and the most versatile material available. As an atomicall...
In this letter, we report a simple and unexpected method of producing polymer–graphene oxide (GO) co...
We designed a gradient solvent strategy for the reduction of graphene oxide, matching the hydrophili...
Graphene oxide (GO) can be enriched at the air–water interface by the adsorption of surfactant molec...
This study presents preliminary experimental data suggesting that sodium 4-(pyrene-1-yl)butane-1-su...
Graphene oxide (GO) flakes dissolved in water can spontaneously form liquid crystals. Liquid crystal...