Graphene oxide (GO) forms persistent dispersions in aqueous solutions up to concentrations of 0.2 mg mL(-1). Addition of methylene blue (MB) to these aqueous dispersion of GO gives rise to the observation in optical spectroscopy of new absorption bands that are indicative of the formation of MB/GO conjugates. Four new absorption maxima have been characterized, and their intensity varies depending on the relative concentration of MB with respect to GO. Two of these bands appearing at 677 and 757 nm correspond to individual MB molecules adsorbed on neutral or acid sites of GO, respectively. Two other bands at 615 and 580 nm are attributable to adsorbed MB molecules showing interaction with other neighbor dye molecules at incomplete (615 nm) o...
We present a comparative experimental and molecular-dynamics (MD) simulation study to elucidate the ...
© 2018 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim. The self-association and solvation pattern of g...
Intercalation of dyes into thin multilayered graphene oxide (GO) films was studied by neutron reflec...
Graphene oxide (GO) forms persistent dispersions in aqueous solutions up to concentrations of 0.2 mg...
The exceptional solution processing potential of graphene oxide (GO) is always one of its main advan...
The exceptional solution processing potential of graphene oxide (GO) is always one of its main advan...
Graphene oxide (GO), as a typical two-dimensional material, possesses a range of oxygen-containing g...
The possible use of dopamine, monitored spectroscopically, as a probe molecule for surface area meas...
The possible use of dopamine, monitored spectroscopically, as a probe molecule for surface area meas...
For various applications of graphene oxide (GO), fast and accurate concentration determination of a ...
For various applications of graphene oxide (GO), fast and accurate concentration determination of a ...
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...
Graphene oxide (GO) is widely used as an adsorbent for organic dyes because of its high surface area...
Graphene oxide (GO) is a highly effective absorbent of methylene blue (MB) and can be used to remove...
We present a comparative experimental and molecular-dynamics (MD) simulation study to elucidate the ...
© 2018 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim. The self-association and solvation pattern of g...
Intercalation of dyes into thin multilayered graphene oxide (GO) films was studied by neutron reflec...
Graphene oxide (GO) forms persistent dispersions in aqueous solutions up to concentrations of 0.2 mg...
The exceptional solution processing potential of graphene oxide (GO) is always one of its main advan...
The exceptional solution processing potential of graphene oxide (GO) is always one of its main advan...
Graphene oxide (GO), as a typical two-dimensional material, possesses a range of oxygen-containing g...
The possible use of dopamine, monitored spectroscopically, as a probe molecule for surface area meas...
The possible use of dopamine, monitored spectroscopically, as a probe molecule for surface area meas...
For various applications of graphene oxide (GO), fast and accurate concentration determination of a ...
For various applications of graphene oxide (GO), fast and accurate concentration determination of a ...
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...
Graphene oxide (GO) is widely used as an adsorbent for organic dyes because of its high surface area...
Graphene oxide (GO) is a highly effective absorbent of methylene blue (MB) and can be used to remove...
We present a comparative experimental and molecular-dynamics (MD) simulation study to elucidate the ...
© 2018 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim. The self-association and solvation pattern of g...
Intercalation of dyes into thin multilayered graphene oxide (GO) films was studied by neutron reflec...