The understanding of hydrogen attachment to carbonaceous surfaces is essential to a wide variety of research fields and technologies such as hydrogen storage for transportation, precise localization of hydrogen in electronic devices and the formation of cosmic H2. For coronene cations as prototypical Polycyclic Aromatic Hydrocarbon (PAH) molecules, the existence of magic numbers upon hydrogenation was uncovered experimentally. Quantum chemistry calculations show that hydrogenation follows a site-specific sequence leading to the appearance of cations having 5, 11, or 17 hydrogen atoms attached, exactly the magic numbers found in the experiments. For these closed-shell cations, further hydrogenation requires appreciable structural changes ass...
Investigating the hydrogenation of carbonaceous materials is of interest in a wide range of research...
We present experimental data on H2 formation processes on gas-phase polycyclic aromatic hydrocarbon ...
Gas-phase coronene cations (C24H12+) can be sequentially hydrogenated with up to 24 additional H ato...
The understanding of hydrogen attachment to carbonaceous surfaces is essential to a wide variety of ...
The understanding of hydrogen attachment to carbonaceous surfaces is essential to a wide variety of ...
The understanding of hydrogen attachment to carbonaceous surfaces is essential to a wide variety of ...
The understanding of hydrogen attachment to carbonaceous surfaces is essential to a wide variety of ...
The understanding of hydrogen attachment to carbonaceous surfaces is essential to a wide variety of ...
Abstract: When exposed to a thermal beam of hydrogen atoms, gas-phase coronene cations C24H12+ can b...
Abstract: When exposed to a thermal beam of hydrogen atoms, gas-phase coronene cations C24H12+ can b...
Molecular hydrogen is the most abundant molecule in the universe. A large fraction of H-2 forms by a...
Molecular hydrogen is the most abundant molecule in the universe. A large fraction of H-2 forms by a...
Molecular hydrogen is the most abundant molecule in the universe. A large fraction of H-2 forms by a...
When exposed to a thermal beam of hydrogen atoms, gas-phase coronene cations C24$ {\mathrm{H}}_{12}^...
Polycyclic aromatic hydrocarbons (PAHs) are ubiquitous in the interstellar medium, and it is thought...
Investigating the hydrogenation of carbonaceous materials is of interest in a wide range of research...
We present experimental data on H2 formation processes on gas-phase polycyclic aromatic hydrocarbon ...
Gas-phase coronene cations (C24H12+) can be sequentially hydrogenated with up to 24 additional H ato...
The understanding of hydrogen attachment to carbonaceous surfaces is essential to a wide variety of ...
The understanding of hydrogen attachment to carbonaceous surfaces is essential to a wide variety of ...
The understanding of hydrogen attachment to carbonaceous surfaces is essential to a wide variety of ...
The understanding of hydrogen attachment to carbonaceous surfaces is essential to a wide variety of ...
The understanding of hydrogen attachment to carbonaceous surfaces is essential to a wide variety of ...
Abstract: When exposed to a thermal beam of hydrogen atoms, gas-phase coronene cations C24H12+ can b...
Abstract: When exposed to a thermal beam of hydrogen atoms, gas-phase coronene cations C24H12+ can b...
Molecular hydrogen is the most abundant molecule in the universe. A large fraction of H-2 forms by a...
Molecular hydrogen is the most abundant molecule in the universe. A large fraction of H-2 forms by a...
Molecular hydrogen is the most abundant molecule in the universe. A large fraction of H-2 forms by a...
When exposed to a thermal beam of hydrogen atoms, gas-phase coronene cations C24$ {\mathrm{H}}_{12}^...
Polycyclic aromatic hydrocarbons (PAHs) are ubiquitous in the interstellar medium, and it is thought...
Investigating the hydrogenation of carbonaceous materials is of interest in a wide range of research...
We present experimental data on H2 formation processes on gas-phase polycyclic aromatic hydrocarbon ...
Gas-phase coronene cations (C24H12+) can be sequentially hydrogenated with up to 24 additional H ato...