ABSTRACT: We performed ab initio excited-state molecular dynamics simulations of a gas-phase photoexcited protonated Schiff base (C1−N2C3−C4C5−C6) to search for control mechanisms of its photoisomerization. The excited molecule twists by ∼90 ° around either the N2C3 bond or the C4C5 bond and relaxes to the ground electronic state through a conical intersection with either a trans or cis outcome. We show that a large initial distortion of several dihedral angles and a specific normal vibrational mode combining pyramidalization and double-bond twisting can lead to a preferential rotation of atoms around the C4C5 bond. We also show that selective pretwisting of several dihedral angles in the initial ground state thermal ensemble (by analogy to...
This work addresses the ultrafast cis-trans photoreactions in retinal binding proteins using ab init...
We report a computational study on the photochemistry of the prototypical aromatic Schiff base salic...
International audienceSmall molecular systems exhibiting Excited State Intramolecular Proton Transfe...
We performed ab initio excited-state molecular dynamics simulations of a gas-phase photoexcited prot...
The primary event occurring during the E-to-Z photoisomerization reaction of retinal protonated Schi...
The primary event occurring during the E-to-Z photoisomerization reaction of retinal protonated Schi...
We report a computational study on the photochemistry of the prototypical aromatic Schiff base salic...
We report a computational study on the photochemistry of the prototypical aromatic Schiff base salic...
The primary event occurring during the E-to-Z photoisomerization reaction of retinal protonated Schi...
The primary event occurring during the E-to-Z photoisomerization reaction of retinal protonated Schi...
The primary event occurring during the E-to-Z photoisomerization reaction of retinal protonated Schi...
The primary event occurring during the E-to-Z photoisomerization reaction of retinal protonated Schi...
The results of new and recently reported CASSCF/6-31G* photoisomerization path computations of a ser...
The results of new and recently reported CASSCF/6-31G* photoisomerization path computations of a ser...
The results of new and recently reported CASSCF/6-31G* photoisomerization path computations of a ser...
This work addresses the ultrafast cis-trans photoreactions in retinal binding proteins using ab init...
We report a computational study on the photochemistry of the prototypical aromatic Schiff base salic...
International audienceSmall molecular systems exhibiting Excited State Intramolecular Proton Transfe...
We performed ab initio excited-state molecular dynamics simulations of a gas-phase photoexcited prot...
The primary event occurring during the E-to-Z photoisomerization reaction of retinal protonated Schi...
The primary event occurring during the E-to-Z photoisomerization reaction of retinal protonated Schi...
We report a computational study on the photochemistry of the prototypical aromatic Schiff base salic...
We report a computational study on the photochemistry of the prototypical aromatic Schiff base salic...
The primary event occurring during the E-to-Z photoisomerization reaction of retinal protonated Schi...
The primary event occurring during the E-to-Z photoisomerization reaction of retinal protonated Schi...
The primary event occurring during the E-to-Z photoisomerization reaction of retinal protonated Schi...
The primary event occurring during the E-to-Z photoisomerization reaction of retinal protonated Schi...
The results of new and recently reported CASSCF/6-31G* photoisomerization path computations of a ser...
The results of new and recently reported CASSCF/6-31G* photoisomerization path computations of a ser...
The results of new and recently reported CASSCF/6-31G* photoisomerization path computations of a ser...
This work addresses the ultrafast cis-trans photoreactions in retinal binding proteins using ab init...
We report a computational study on the photochemistry of the prototypical aromatic Schiff base salic...
International audienceSmall molecular systems exhibiting Excited State Intramolecular Proton Transfe...