N-doped defective nanocarbon (N-DNC) catalysts have been widely studied due to their exceptional catalytic activity in many applications, but the O-3 activation mechanism in catalytic ozonation of N-DNCs has yet to be established. In this study, we systematically mapped out the detailed reaction pathways of O-3 activation on 10 potential active sites of 8 representative configurations of N-DNCs, including the pyridinic N, pyrrolic N, N on edge, and porphyrinic N, based on the results of density functional theory (DFT) calculations. The DFT results indicate that O-3 decomposes into an adsorbed atomic oxygen species (O-ads) and an O-3(2) on the active sites. The atomic charge and spin population on the O-ads species indicate that it may not o...
Nanocarbons have been demonstrated as promising environmentally benign catalysts for advanced oxidat...
The selective conversion of alkanes to high value products remains a monumental catalytic challenge....
Using a combination of experimental and computational investigations, we assemble a consistent mecha...
N-doped defective nanocarbon (N-DNC) catalysts have been widely studied due to their exceptional cat...
Metal-free catalysts such as N-doped nanocarbons are sustainable alternatives to metal-based catalys...
The detailed evolution mechanism of O-3 into Reactive oxygen species (ROS) is of paramount importanc...
Catalytic ozonation relies on the direct oxidation by ozone (O3) and indirect oxidation by reactive ...
Hydroxyl radical-dominated oxidation in catalytic ozonation is, in particular, important in water tr...
Nanocarbons doped with nitrogen (N) and/or metal-N coordination structures hold great promise in rep...
Catalysis is ubiquitous in modern civilization, with far-reaching applications in the chemical, ener...
The discovery that the commercial rubber antidegradant 6PPD reacts with ozone (O3) to produce a high...
Multidoped carbons are often used for oxygen activation catalysis, both in heterogeneous catalysis a...
The realization of a hydrogen economy would be facilitated by the discovery of a water-splitting ele...
Metal-free heteroatom doped nanocarbons are promising alternatives to the metal-based materials in c...
Singlet oxygen, the lowest excited state of molecular oxygen, continues to play crucial roles in nat...
Nanocarbons have been demonstrated as promising environmentally benign catalysts for advanced oxidat...
The selective conversion of alkanes to high value products remains a monumental catalytic challenge....
Using a combination of experimental and computational investigations, we assemble a consistent mecha...
N-doped defective nanocarbon (N-DNC) catalysts have been widely studied due to their exceptional cat...
Metal-free catalysts such as N-doped nanocarbons are sustainable alternatives to metal-based catalys...
The detailed evolution mechanism of O-3 into Reactive oxygen species (ROS) is of paramount importanc...
Catalytic ozonation relies on the direct oxidation by ozone (O3) and indirect oxidation by reactive ...
Hydroxyl radical-dominated oxidation in catalytic ozonation is, in particular, important in water tr...
Nanocarbons doped with nitrogen (N) and/or metal-N coordination structures hold great promise in rep...
Catalysis is ubiquitous in modern civilization, with far-reaching applications in the chemical, ener...
The discovery that the commercial rubber antidegradant 6PPD reacts with ozone (O3) to produce a high...
Multidoped carbons are often used for oxygen activation catalysis, both in heterogeneous catalysis a...
The realization of a hydrogen economy would be facilitated by the discovery of a water-splitting ele...
Metal-free heteroatom doped nanocarbons are promising alternatives to the metal-based materials in c...
Singlet oxygen, the lowest excited state of molecular oxygen, continues to play crucial roles in nat...
Nanocarbons have been demonstrated as promising environmentally benign catalysts for advanced oxidat...
The selective conversion of alkanes to high value products remains a monumental catalytic challenge....
Using a combination of experimental and computational investigations, we assemble a consistent mecha...