The exceptional solution processing potential of graphene oxide (GO) is always one of its main advantages over graphene in terms of its industrial relevance in coatings, electronics, and energy storage. However, the presence of a variety of functional groups on the basal plane and edges of GO makes understanding suspension behavior in aqueous and organic solvents, a major challenge. Acoustic spectroscopy can also measure zeta potential to provide unique insight into flocculating, meta-stable, and stable suspensions of GO in deionized water and a variety of organic solvents (including ethanol, ethylene glycol, and mineral oil). As expected, a match between solvent polarity and the polar functional groups on the GO surface favors stable collo...
© The Owner Societies 2017. One of the main advantages of graphene oxide (GO) over its non-oxidized ...
© The Owner Societies 2017. One of the main advantages of graphene oxide (GO) over its non-oxidized ...
Although intensive research for graphene oxide (GO) has been conducted, the broad size distribution ...
The exceptional solution processing potential of graphene oxide (GO) is always one of its main advan...
Ability of graphene oxide to form stable dispersion in organic solvents was studied in this work. As...
The chemistry underlying the aqueous dispersibility of graphene oxide (GO) and reduced graphene oxid...
The chemistry underlying the aqueous dispersibility of graphene oxide (GO) and reduced graphene oxid...
We report that homogeneous colloidal suspensions of chemically modified graphene sheets were readily...
Aggregation is a critical limitation for the practical application of graphene-based materials. Here...
The conversion of graphite to graphene oxide (GO) is an effective and widely used method for solubil...
The conversion of graphite to graphene oxide (GO) is an effective and widely used method for solubil...
Colloidal stability of graphene oxide (GO) is studied in aqueous and organic media accompanied by an...
This paper presents a unique synergistic behavior between a graphene oxide (GO) and graphene nanopla...
Graphene oxide (GO) forms persistent dispersions in aqueous solutions up to concentrations of 0.2 mg...
While graphene oxide (GO) has been found to be the most toxic graphene-based nanomaterial, its envir...
© The Owner Societies 2017. One of the main advantages of graphene oxide (GO) over its non-oxidized ...
© The Owner Societies 2017. One of the main advantages of graphene oxide (GO) over its non-oxidized ...
Although intensive research for graphene oxide (GO) has been conducted, the broad size distribution ...
The exceptional solution processing potential of graphene oxide (GO) is always one of its main advan...
Ability of graphene oxide to form stable dispersion in organic solvents was studied in this work. As...
The chemistry underlying the aqueous dispersibility of graphene oxide (GO) and reduced graphene oxid...
The chemistry underlying the aqueous dispersibility of graphene oxide (GO) and reduced graphene oxid...
We report that homogeneous colloidal suspensions of chemically modified graphene sheets were readily...
Aggregation is a critical limitation for the practical application of graphene-based materials. Here...
The conversion of graphite to graphene oxide (GO) is an effective and widely used method for solubil...
The conversion of graphite to graphene oxide (GO) is an effective and widely used method for solubil...
Colloidal stability of graphene oxide (GO) is studied in aqueous and organic media accompanied by an...
This paper presents a unique synergistic behavior between a graphene oxide (GO) and graphene nanopla...
Graphene oxide (GO) forms persistent dispersions in aqueous solutions up to concentrations of 0.2 mg...
While graphene oxide (GO) has been found to be the most toxic graphene-based nanomaterial, its envir...
© The Owner Societies 2017. One of the main advantages of graphene oxide (GO) over its non-oxidized ...
© The Owner Societies 2017. One of the main advantages of graphene oxide (GO) over its non-oxidized ...
Although intensive research for graphene oxide (GO) has been conducted, the broad size distribution ...