Using a combination of experimental and computational investigations, we assemble a consistent mechanistic model for the oxygen reduction reaction (ORR) at molecularly well-defined graphite-conjugated catalyst (GCC) active sites featuring aryl-pyridinium moieties \((N^+-GCC)\). ORR catalysis at glassy carbon surfaces modified with \(N^+-GCC\) fragments displays near-first-order dependence in \(O_2\) partial pressure and near-zero-order dependence on electrolyte pH. Tafel analysis suggests an equilibrium one-electron transfer process followed by a rate-limiting chemical step at modest overpotentials that transitions to a rate-limiting electron transfer sequence at higher overpotentials. Finite-cluster computational modeling of the \(N^+-GCC\...
We present a combination of comprehensive experimental and theoretical evidence to unravel the mecha...
Graphite-conjugated catalysts (GCCs) are a class of highly synthetically tunable materials with prop...
Nanocarbons doped with nitrogen (N) and/or metal-N coordination structures hold great promise in rep...
Using a combination of experimental and computational investigations, we assemble a consistent mecha...
Using a combination of experimental and computational investigations, we assemble a consistent mecha...
The design of advanced N-doped carbon materials towards oxygen reduction reaction (ORR) catalysis is...
N-doped carbon materials are promising electrocatalysts for oxygen reduction reaction (ORR). However...
Abstract(#br)The development of highly active and low-cost catalysts for electrochemical reactions i...
N-doped carbon materials have been considered one of the most promising options for the replacement ...
To date, controversies remain in the unambiguous identification of the active sites in N-doped carbo...
Carbon materials based catalysts (CMCs) are extensively investigated to replace expensive noble meta...
Owing to the difficulty in controlling the dopant or defect types and their homogeneity in carbon ma...
Carbon materials based catalysts (CMCs) are extensively investigated to replace expensive noble meta...
To optimize nitrogen-doped graphitic materials as metal-free catalysts for the oxygen reduction reac...
AbstractHere, we investigate the electrochemical activity of a highly oriented pyrolytic graphite (H...
We present a combination of comprehensive experimental and theoretical evidence to unravel the mecha...
Graphite-conjugated catalysts (GCCs) are a class of highly synthetically tunable materials with prop...
Nanocarbons doped with nitrogen (N) and/or metal-N coordination structures hold great promise in rep...
Using a combination of experimental and computational investigations, we assemble a consistent mecha...
Using a combination of experimental and computational investigations, we assemble a consistent mecha...
The design of advanced N-doped carbon materials towards oxygen reduction reaction (ORR) catalysis is...
N-doped carbon materials are promising electrocatalysts for oxygen reduction reaction (ORR). However...
Abstract(#br)The development of highly active and low-cost catalysts for electrochemical reactions i...
N-doped carbon materials have been considered one of the most promising options for the replacement ...
To date, controversies remain in the unambiguous identification of the active sites in N-doped carbo...
Carbon materials based catalysts (CMCs) are extensively investigated to replace expensive noble meta...
Owing to the difficulty in controlling the dopant or defect types and their homogeneity in carbon ma...
Carbon materials based catalysts (CMCs) are extensively investigated to replace expensive noble meta...
To optimize nitrogen-doped graphitic materials as metal-free catalysts for the oxygen reduction reac...
AbstractHere, we investigate the electrochemical activity of a highly oriented pyrolytic graphite (H...
We present a combination of comprehensive experimental and theoretical evidence to unravel the mecha...
Graphite-conjugated catalysts (GCCs) are a class of highly synthetically tunable materials with prop...
Nanocarbons doped with nitrogen (N) and/or metal-N coordination structures hold great promise in rep...