International audienceRecent experimental work revealed that the lifetime of the S3 state of protonated 7-azaindole is about ten times longer than that of protonated 6-azaindole. We simulated the nonradiative decay pathways of these molecules using trajectory surface hopping dynamics after photoexcitation into S3 to elucidate the reason for this difference. Both isomers mainly follow a common ππ* relaxation pathway involving multiple state crossings while coming down from S3 to S1 in the subpicosecond time scale. However, the simulations reveal that the excited-state topographies are such that while the 6-isomer can easily access the region of nonadiabatic transitions, the internal conversion of the 7-isomer is delayed by a pre-Dewar bond f...
The nonadiabatic photochemistry of 6-azauracil has been studied by means of the CASPT2//CASSCF proto...
A picosecond pump and probe experiment has been applied to study the excited state dynamics of 7-aza...
WOS:000361212000051International audienceThe nature of the excited-state double proton transfer in 7...
International audienceRecent experimental work revealed that the lifetime of the S3 state of protona...
International audienceRecent experimental work revealed that the lifetime of the S3 state of protona...
International audienceRecent experimental work revealed that the lifetime of the S3 state of protona...
International audienceWe present a study of the photofragmentation of three protonated azaindole mol...
International audienceWe present a study of the photofragmentation of three protonated azaindole mol...
International audienceWe present a study of the photofragmentation of three protonated azaindole mol...
Author Institution: Physical Chemistry Department, Indian Association for the Cultivation of Science...
Author Institution: Physical Chemistry Department, Indian Association for the Cultivation of Science...
The mechanism of the photoisomerization of azobenzene has been studied by means of multiconfiguratio...
Azobenzene is one of the most ubiquitous photoswitches in photochemistry and a prototypical model fo...
4-(N,N-Dimethylamino)benzonitrile (DMABN) is the archetypal system for dual fluorescence. Several pa...
Solvent effects on the excited-state double proton transfer (ESDPT) mechanism in the 7-azaindole (7A...
The nonadiabatic photochemistry of 6-azauracil has been studied by means of the CASPT2//CASSCF proto...
A picosecond pump and probe experiment has been applied to study the excited state dynamics of 7-aza...
WOS:000361212000051International audienceThe nature of the excited-state double proton transfer in 7...
International audienceRecent experimental work revealed that the lifetime of the S3 state of protona...
International audienceRecent experimental work revealed that the lifetime of the S3 state of protona...
International audienceRecent experimental work revealed that the lifetime of the S3 state of protona...
International audienceWe present a study of the photofragmentation of three protonated azaindole mol...
International audienceWe present a study of the photofragmentation of three protonated azaindole mol...
International audienceWe present a study of the photofragmentation of three protonated azaindole mol...
Author Institution: Physical Chemistry Department, Indian Association for the Cultivation of Science...
Author Institution: Physical Chemistry Department, Indian Association for the Cultivation of Science...
The mechanism of the photoisomerization of azobenzene has been studied by means of multiconfiguratio...
Azobenzene is one of the most ubiquitous photoswitches in photochemistry and a prototypical model fo...
4-(N,N-Dimethylamino)benzonitrile (DMABN) is the archetypal system for dual fluorescence. Several pa...
Solvent effects on the excited-state double proton transfer (ESDPT) mechanism in the 7-azaindole (7A...
The nonadiabatic photochemistry of 6-azauracil has been studied by means of the CASPT2//CASSCF proto...
A picosecond pump and probe experiment has been applied to study the excited state dynamics of 7-aza...
WOS:000361212000051International audienceThe nature of the excited-state double proton transfer in 7...