The reduction of graphene oxide surfaces yielding molecular CO/CO(2) is studied from first principles using density functional theory. We find that this reaction can proceed exothermically only from surface precursors containing more oxygen atoms than strictly needed to produce CO/CO(2) in the gas phase. The calculations show that the lowest-energy configurations of multiple O adsorbates do not involve clustering of epoxy groups (the stable form of O adatoms on graphitic surfaces) but always contain lactone groups either in lactone-ether or in ether-lactone-ether form. We identify these lowest-energy structures as the main reaction precursors. The O adatoms near the lactone group catalyze its gasification to CO/CO(2) by reducing the activat...
The initial oxidation stages of perfect and defective graphitic surfaces exposed to atomic oxygen ha...
The initial oxidation stages of perfect and defective graphitic surfaces exposed to atomic oxygen ha...
We present reaction pathways for adsorption reactions of the O atom and O<sub>2</sub> molecule in th...
The reduction of graphene oxide surfaces yielding molecular CO/CO(2) is studied from first principle...
Graphene is easily produced by thermally reducing graphene oxide. However, defect formation in the C...
Graphene is easily produced by thermally reducing graphene oxide. However, defect formation in the C...
Graphene is easily produced by thermally reducing graphene oxide. However, defect formation in the C...
Graphene oxide holds promise as a carbon-based nanomaterial that can be produced inexpensively in la...
Graphene oxide holds promise as a carbon-based nanomaterial that can be produced inexpensively in la...
We studied the oxidation of vacancies in graphene by abinitio atomistic thermodynamics to identify t...
Density functional theory was used to study the effects of different types of oxygen-containing func...
Graphene oxide holds promise as a carbon-based nanomaterial that can be produced inexpensively in la...
Graphene oxide holds promise as a carbon-based nanomaterial that can be produced inexpensively in la...
We studied the oxidation of vacancies in graphene by abinitio atomistic thermodynamics to identify t...
We studied the oxidation of vacancies in graphene by abinitio atomistic thermodynamics to identify t...
The initial oxidation stages of perfect and defective graphitic surfaces exposed to atomic oxygen ha...
The initial oxidation stages of perfect and defective graphitic surfaces exposed to atomic oxygen ha...
We present reaction pathways for adsorption reactions of the O atom and O<sub>2</sub> molecule in th...
The reduction of graphene oxide surfaces yielding molecular CO/CO(2) is studied from first principle...
Graphene is easily produced by thermally reducing graphene oxide. However, defect formation in the C...
Graphene is easily produced by thermally reducing graphene oxide. However, defect formation in the C...
Graphene is easily produced by thermally reducing graphene oxide. However, defect formation in the C...
Graphene oxide holds promise as a carbon-based nanomaterial that can be produced inexpensively in la...
Graphene oxide holds promise as a carbon-based nanomaterial that can be produced inexpensively in la...
We studied the oxidation of vacancies in graphene by abinitio atomistic thermodynamics to identify t...
Density functional theory was used to study the effects of different types of oxygen-containing func...
Graphene oxide holds promise as a carbon-based nanomaterial that can be produced inexpensively in la...
Graphene oxide holds promise as a carbon-based nanomaterial that can be produced inexpensively in la...
We studied the oxidation of vacancies in graphene by abinitio atomistic thermodynamics to identify t...
We studied the oxidation of vacancies in graphene by abinitio atomistic thermodynamics to identify t...
The initial oxidation stages of perfect and defective graphitic surfaces exposed to atomic oxygen ha...
The initial oxidation stages of perfect and defective graphitic surfaces exposed to atomic oxygen ha...
We present reaction pathways for adsorption reactions of the O atom and O<sub>2</sub> molecule in th...