Density Functional Theory calculations were performed on N doped graphene sheet to investigate the trends for adsorption energy variation of oxygen reduction reaction intermediates (HOO*, O*, HO*) when the N concentration increases from 0N (0%) to 1N (33%), to 2N (67%) and to 3N (100%) around the C active site. The impact of the distance between the doping N atoms and the C active site is also studied. Last, the impact of additionally co-adsorbed HO*/O* intermediates was probed. For all the studied systems the magnitudes with which varies the adsorption energies are shaped by the HO*/HOO* capability of accommodating less charge than O* (i.e according to octet rule 1e− vs. 2e−). When N concentration increases, adsorption energy of O* increas...
Heteroatom doped graphene as a single-atom catalyst for oxygen reduction reaction (ORR) has received...
We investigated the selectivity of N-doped graphene nanoclusters (N-GNCs) toward the oxygen reductio...
Fe/N/C catalysts are proven to be highly active for oxygen reduction reaction (ORR). The detailed ki...
Density Functional Theory calculations were performed on N doped graphene sheet to investigate the t...
Nitrogen doped graphene (N-graphene) has been reported possessing significant oxygen reduction react...
Nitrogen doped graphene (N-graphene)has been reproted possessing significant oxygen reduction reacti...
Nanocarbons doped with nitrogen (N) and/or metal-N coordination structures hold great promise in rep...
Oxygen reduction reaction (ORR) remains challenging due to its complexity and slow kinetics. In part...
Summary of charge transfer of active atoms on GP, 1Gr, 3Py, 3Py_3Gr, and 2Gr.;The vertical and side ...
Cataloged from PDF version of article.Abstract Using first-principles calculations within density f...
Molecular oxygen and hydrogen can be obtained from the water-splitting process through the electroly...
The density functional theory (DFT) calculations are performed to study the oxygen reduction reactio...
We used ab initio calculations based on density functional theory (DFT) to investigate the binding o...
Active sites and the catalytic mechanism of nitrogen-doped graphene in an oxygen reduction reaction ...
Metal-coordinated nitrogen-doped carbons are catalytically active for oxygen reduction reaction (ORR...
Heteroatom doped graphene as a single-atom catalyst for oxygen reduction reaction (ORR) has received...
We investigated the selectivity of N-doped graphene nanoclusters (N-GNCs) toward the oxygen reductio...
Fe/N/C catalysts are proven to be highly active for oxygen reduction reaction (ORR). The detailed ki...
Density Functional Theory calculations were performed on N doped graphene sheet to investigate the t...
Nitrogen doped graphene (N-graphene) has been reported possessing significant oxygen reduction react...
Nitrogen doped graphene (N-graphene)has been reproted possessing significant oxygen reduction reacti...
Nanocarbons doped with nitrogen (N) and/or metal-N coordination structures hold great promise in rep...
Oxygen reduction reaction (ORR) remains challenging due to its complexity and slow kinetics. In part...
Summary of charge transfer of active atoms on GP, 1Gr, 3Py, 3Py_3Gr, and 2Gr.;The vertical and side ...
Cataloged from PDF version of article.Abstract Using first-principles calculations within density f...
Molecular oxygen and hydrogen can be obtained from the water-splitting process through the electroly...
The density functional theory (DFT) calculations are performed to study the oxygen reduction reactio...
We used ab initio calculations based on density functional theory (DFT) to investigate the binding o...
Active sites and the catalytic mechanism of nitrogen-doped graphene in an oxygen reduction reaction ...
Metal-coordinated nitrogen-doped carbons are catalytically active for oxygen reduction reaction (ORR...
Heteroatom doped graphene as a single-atom catalyst for oxygen reduction reaction (ORR) has received...
We investigated the selectivity of N-doped graphene nanoclusters (N-GNCs) toward the oxygen reductio...
Fe/N/C catalysts are proven to be highly active for oxygen reduction reaction (ORR). The detailed ki...