Novel issues of electronic nonadiabatic coupling in the excited state dynamics of prototypical naphthalene radical cation of polycyclic aromatic hydrocarbon of the polyacene family are theoretically investigated. A benchmark ab initio quantum dynamical study is performed and its complex vibronic spectra and nonradiative decay are examined. The findings are in very good accord with the experiment, unambiguously establishing the crucial role of intricate electron-nuclear coupling in the photoinduced dynamical processes of this system
Quantum chemistry and dynamics of the ground X<sup>~ 2</sup>B<sub>1</sub> and low-lying excited A<su...
We quantify the nonadiabatic contributions to the vibronic sidebands of equilibrium and explicitly t...
This theoretical work looks at excited state photochemistry - the study of the molecular processes t...
Novel issues of electronic nonadiabatic coupling in the excited state dynamics of prototypical napht...
Polycyclic aromatic hydrocarbons (PAHs), in particular, their radical cation (PAH+), have long been ...
The question of how to describe the crossing of molecular electronic states is one of the most chall...
The hole - vibrational coupling in naphthalene is studied using high-resolution gas-phase photoelect...
Inspired by the recent astronomical discovery of new diffused interstellar bands (DIBs) assigned to ...
Polycyclic aromatic hydrocarbons (PAHs), in particular, their radical cation (PAH$^+$), have long be...
Nuclear dynamics is investigated theoretically from first principles by employing the ab initio vibr...
Nuclear dynamics is investigated theoretically from first principles by employing the ab initio vibr...
Radical cations of polycyclic aromatic hydrocarbons have been postulated to be molecular carriers of...
π-conjugated polymers have become an important class of materials for electronic devices. Design of ...
Quantum chemistry and dynamics of the ground X~ 2B1 and low-lying excited A~ 2A2, B~ 2B2, and C~ 2B1...
The equilibrium geometry and 48 vibrational normal-mode frequencies of the neutral and cationic grou...
Quantum chemistry and dynamics of the ground X<sup>~ 2</sup>B<sub>1</sub> and low-lying excited A<su...
We quantify the nonadiabatic contributions to the vibronic sidebands of equilibrium and explicitly t...
This theoretical work looks at excited state photochemistry - the study of the molecular processes t...
Novel issues of electronic nonadiabatic coupling in the excited state dynamics of prototypical napht...
Polycyclic aromatic hydrocarbons (PAHs), in particular, their radical cation (PAH+), have long been ...
The question of how to describe the crossing of molecular electronic states is one of the most chall...
The hole - vibrational coupling in naphthalene is studied using high-resolution gas-phase photoelect...
Inspired by the recent astronomical discovery of new diffused interstellar bands (DIBs) assigned to ...
Polycyclic aromatic hydrocarbons (PAHs), in particular, their radical cation (PAH$^+$), have long be...
Nuclear dynamics is investigated theoretically from first principles by employing the ab initio vibr...
Nuclear dynamics is investigated theoretically from first principles by employing the ab initio vibr...
Radical cations of polycyclic aromatic hydrocarbons have been postulated to be molecular carriers of...
π-conjugated polymers have become an important class of materials for electronic devices. Design of ...
Quantum chemistry and dynamics of the ground X~ 2B1 and low-lying excited A~ 2A2, B~ 2B2, and C~ 2B1...
The equilibrium geometry and 48 vibrational normal-mode frequencies of the neutral and cationic grou...
Quantum chemistry and dynamics of the ground X<sup>~ 2</sup>B<sub>1</sub> and low-lying excited A<su...
We quantify the nonadiabatic contributions to the vibronic sidebands of equilibrium and explicitly t...
This theoretical work looks at excited state photochemistry - the study of the molecular processes t...