The practical number of charge carriers loaded is crucial to the evaluation of the capacity performance of carbon-based electrodes in service, and cannot be easily addressed experimentally. In this paper, we report a density functional theory study of charge carrier adsorption onto zigzag edge-shaped graphene nanoribbons (ZGNRs), both pristine and incorporating edge substitution with boron, nitrogen or oxygen atoms. All edge substitutions are found to be energetically favorable, especially in oxidized environments. The maximal loading of protons onto the substituted ZGNR edges obeys a rule of [8-n-1], where n is the number of valence electrons of the edge-site atom constituting the adsorption site. Hence, a maximum charge loading is achieve...
This paper investigates the adsorption of carbon adatoms on graphene and its nanoribbons using first...
Using the density functional theory with the effective screening medium method, we study the electro...
The physical and chemical properties of decorated graphene and graphene ribbons, single-layer III-V ...
Heteroatom doping on the edge of graphene may serve as an effective way to tune chemical activity of...
Heteroatom doping on the edge of graphene may serve as an effective way to tune chemical activity of...
Heteroatom doping on the edge of graphene may serve as an effective way to tune chemical activity of...
Organic based graphene nanoribbons (GNRs) can be good candidates as carrier extraction interlayers f...
The electronic structure of zigzag graphene nanoribbon (ZGNR) is studied using density functional th...
The realistic shapes of N doped graphene nanoribbons (GNRs) can be realized by considering nearly zi...
The effect of chemical functionalization on the electronic properties of graphene nanoribbon superla...
The influence of Lithium adatom and edge modification on the electronic structure and the transport ...
We perform first-principles calculations based on density functional theory to study quasi-one-dimen...
Functionalization of zigzag graphene nanoribbon (ZGNR) segment containing 120 C atoms with pyridine ...
[EN] Zigzag edges of neutral armchair–oriented Graphene Nano–Ribbons show states strongly localized ...
Phosphorus-doped graphene is known to exhibit good electrocatalytic activity for oxygen reduction re...
This paper investigates the adsorption of carbon adatoms on graphene and its nanoribbons using first...
Using the density functional theory with the effective screening medium method, we study the electro...
The physical and chemical properties of decorated graphene and graphene ribbons, single-layer III-V ...
Heteroatom doping on the edge of graphene may serve as an effective way to tune chemical activity of...
Heteroatom doping on the edge of graphene may serve as an effective way to tune chemical activity of...
Heteroatom doping on the edge of graphene may serve as an effective way to tune chemical activity of...
Organic based graphene nanoribbons (GNRs) can be good candidates as carrier extraction interlayers f...
The electronic structure of zigzag graphene nanoribbon (ZGNR) is studied using density functional th...
The realistic shapes of N doped graphene nanoribbons (GNRs) can be realized by considering nearly zi...
The effect of chemical functionalization on the electronic properties of graphene nanoribbon superla...
The influence of Lithium adatom and edge modification on the electronic structure and the transport ...
We perform first-principles calculations based on density functional theory to study quasi-one-dimen...
Functionalization of zigzag graphene nanoribbon (ZGNR) segment containing 120 C atoms with pyridine ...
[EN] Zigzag edges of neutral armchair–oriented Graphene Nano–Ribbons show states strongly localized ...
Phosphorus-doped graphene is known to exhibit good electrocatalytic activity for oxygen reduction re...
This paper investigates the adsorption of carbon adatoms on graphene and its nanoribbons using first...
Using the density functional theory with the effective screening medium method, we study the electro...
The physical and chemical properties of decorated graphene and graphene ribbons, single-layer III-V ...