Abstract Controlling the structure of graphene oxide (GO) phases and their smaller analogues, graphene (oxide) quantum dots (GOQDs), is vitally important for any of their widespread intended applications: highly ordered arrangements of nanoparticles for thin-film or membrane applications of GO, dispersed nanoparticles for composite materials and three-dimensional porous arrangements for hydrogels. In aqueous environments, it is not only the chemical composition of the GO flakes that determines their morphologies; external factors such as pH and the coexisting cations also influence the structures formed. By using accurate models of GO that capture the heterogeneity of surface oxidation and very large-scale coarse-grained molecular dynamics ...
This work describes the aggregation process and explains the optical behavior of graphene oxide quan...
Molecular dynamics (MD) simulations were performed to provide molecular insight into the aggregation...
Colloidal stability of graphene oxide (GO) is studied in aqueous and organic media accompanied by an...
Controlling the structure of graphene oxide (GO) phases and their smaller analogues, graphene (oxide...
Controlling the structure of graphene and graphene oxide (GO) phases is vitally important for any of...
Although graphene oxide (GO) has been used in many applications to improve human life quality, its e...
We present a comparative experimental and molecular-dynamics (MD) simulation study to elucidate the ...
In this work, we employ fully atomistic molecular dynamics simulations to elucidate the effects of t...
Graphitic nanoparticles, specifically, graphene oxide (GO) nanoflakes, are of major interest in the ...
A comparative experimental and molecular dynamics (MD) simulation study was carried out to investiga...
A comparative experimental and molecular dynamics (MD) simulation study was carried out to investiga...
Graphitic nanoparticles, specifically, graphene oxide (GO) nanoflakes, are of major interest in the ...
Graphene oxide (GO), as a typical two-dimensional material, possesses a range of oxygen-containing g...
Graphene oxides (GO) of highly polydisperse size distribution were prepared by the Brodie method and...
Graphene oxides (GO) of highly polydisperse size distribution were prepared by the Brodie method and...
This work describes the aggregation process and explains the optical behavior of graphene oxide quan...
Molecular dynamics (MD) simulations were performed to provide molecular insight into the aggregation...
Colloidal stability of graphene oxide (GO) is studied in aqueous and organic media accompanied by an...
Controlling the structure of graphene oxide (GO) phases and their smaller analogues, graphene (oxide...
Controlling the structure of graphene and graphene oxide (GO) phases is vitally important for any of...
Although graphene oxide (GO) has been used in many applications to improve human life quality, its e...
We present a comparative experimental and molecular-dynamics (MD) simulation study to elucidate the ...
In this work, we employ fully atomistic molecular dynamics simulations to elucidate the effects of t...
Graphitic nanoparticles, specifically, graphene oxide (GO) nanoflakes, are of major interest in the ...
A comparative experimental and molecular dynamics (MD) simulation study was carried out to investiga...
A comparative experimental and molecular dynamics (MD) simulation study was carried out to investiga...
Graphitic nanoparticles, specifically, graphene oxide (GO) nanoflakes, are of major interest in the ...
Graphene oxide (GO), as a typical two-dimensional material, possesses a range of oxygen-containing g...
Graphene oxides (GO) of highly polydisperse size distribution were prepared by the Brodie method and...
Graphene oxides (GO) of highly polydisperse size distribution were prepared by the Brodie method and...
This work describes the aggregation process and explains the optical behavior of graphene oxide quan...
Molecular dynamics (MD) simulations were performed to provide molecular insight into the aggregation...
Colloidal stability of graphene oxide (GO) is studied in aqueous and organic media accompanied by an...