Herein we describe a computational study undertaken in an effort to elucidate the reaction mechanisms behind the experimentally observed oxidations and hydrations catalyzed by graphene oxide (GO). We used the oxidation of benzyl alcohol to benzaldehyde as a model reaction and DFT calculations revealed that the reaction occurred via the transfer of hydrogen atoms from the organic molecule to the GO surface. In particular, neighboring epoxide groups that decorate the GO basal plane were ring-opened, which resulted in the formation of diols, followed by dehydration. Our calculations were consistent with the experimentally observed dependence of this chemistry on molecular oxygen, and revealed that the partially reduced catalyst was able to be ...
© 2020 Elsevier Ltd Despite recent progress, the mechanism of the graphene oxide (GO) formation rema...
Catalytic conversion of hazardous gases can solve many of the environmental problems caused by them....
In this study, an attempt has been made to investigate the mechanistic pathway for the aerobic oxida...
A novel mechanism for the selective activation of benzyl alcohol by graphene oxide and N-doped graph...
A novel mechanism for the selective activation of benzyl alcohol by graphene oxide and N-doped graph...
In this study, an attempt has been made to investigate the mechanistic pathway for the aerobic oxida...
We employ molecular dynamic simulations to study the reduction process of graphene oxide (GO) in a c...
We employ molecular dynamic simulations to study the reduction process of graphene oxide (GO) in a c...
We employ molecular dynamic simulations to study the reduction process of graphene oxide (GO) in a c...
We employ molecular dynamic simulations to study the reduction process of graphene oxide (GO) in a c...
Graphene-based materials have emerged as novel and green alternatives to metals/oxides for environme...
Graphene-based materials have emerged as novel and green alternatives to metals/oxides for environme...
Applied to graphene oxide, the molecular theory of graphene considers its oxide as a final product i...
On the basis of density functional calculations, we demonstrate a significant difference in oxidatio...
Molecular oxygen and hydrogen can be obtained from the water-splitting process through the electroly...
© 2020 Elsevier Ltd Despite recent progress, the mechanism of the graphene oxide (GO) formation rema...
Catalytic conversion of hazardous gases can solve many of the environmental problems caused by them....
In this study, an attempt has been made to investigate the mechanistic pathway for the aerobic oxida...
A novel mechanism for the selective activation of benzyl alcohol by graphene oxide and N-doped graph...
A novel mechanism for the selective activation of benzyl alcohol by graphene oxide and N-doped graph...
In this study, an attempt has been made to investigate the mechanistic pathway for the aerobic oxida...
We employ molecular dynamic simulations to study the reduction process of graphene oxide (GO) in a c...
We employ molecular dynamic simulations to study the reduction process of graphene oxide (GO) in a c...
We employ molecular dynamic simulations to study the reduction process of graphene oxide (GO) in a c...
We employ molecular dynamic simulations to study the reduction process of graphene oxide (GO) in a c...
Graphene-based materials have emerged as novel and green alternatives to metals/oxides for environme...
Graphene-based materials have emerged as novel and green alternatives to metals/oxides for environme...
Applied to graphene oxide, the molecular theory of graphene considers its oxide as a final product i...
On the basis of density functional calculations, we demonstrate a significant difference in oxidatio...
Molecular oxygen and hydrogen can be obtained from the water-splitting process through the electroly...
© 2020 Elsevier Ltd Despite recent progress, the mechanism of the graphene oxide (GO) formation rema...
Catalytic conversion of hazardous gases can solve many of the environmental problems caused by them....
In this study, an attempt has been made to investigate the mechanistic pathway for the aerobic oxida...