Detailed simulation study is reported for the excited-state dynamics of photoisomerization of cis-tetraphenylethylene (TPE) following excitation by a femtosecond laser pulse. The technique for this investigation is semiclassical dynamics simulation, which is described briefly in the paper. Upon photoexcitation by a femtosecond laser pulse, the stretching motion of the ethylenic bond of TPE is initially excited, leading to a significant lengthening of ethylenic bond in 300 fs. Twisting motion about the ethylenic bond is activated by the energy released from the relaxation of the stretching mode. The 90 degrees twisting about the ethylenic bond from an approximately planar geometry to nearly a perpendicular conformation in the electronically ...
The ultrafast excited-state dynamics of hexamethylsexithiophene in solution are investigated by femt...
Ultrafast excited-state processes play a key role in organic electronics and photovoltaics, governin...
International audienceAlthough tetraphenylethylene (TPE) and its derivatives have been the most comm...
The initial dynamics after excitation to the S-1 state of tetraphenylethylene is studied using femto...
Ultrafast torsional dynamics plays an important role in the photoinduced excited state dynamics. Tet...
Femtosecond pump-probe spectroscopy is used to explore the excited-state dynamics of TPE in polar an...
Femtosecond pump-probe spectroscopy is used to explore the excited-state dynamics of TPE in polar an...
Femtosecond pump-probe spectroscopy is used to explore the excited-state dynamics of TPE in polar an...
The photophysical properties of tetraphenylethene (TPE) compounds may differ widely depending on the...
The excited-state dynamics of oligomeric phenyleneethynylenes (OPEs) of various length and substitut...
International audienceReal-time dynamics of the electronically excited open-ring isomer of 1,2-bis(2...
A realistic dynamical simulation is reported for ultrafast laser excitation and rotational de-excita...
The excited-state dynamics of oligomeric phenyleneethynylenes (OPEs) of various length and substitut...
Picosecond and femtosecond time resolved laser experiments were carried out to investigate the photo...
Excited state ultrafast conformational reorganization is recognized as an important phenomenon that ...
The ultrafast excited-state dynamics of hexamethylsexithiophene in solution are investigated by femt...
Ultrafast excited-state processes play a key role in organic electronics and photovoltaics, governin...
International audienceAlthough tetraphenylethylene (TPE) and its derivatives have been the most comm...
The initial dynamics after excitation to the S-1 state of tetraphenylethylene is studied using femto...
Ultrafast torsional dynamics plays an important role in the photoinduced excited state dynamics. Tet...
Femtosecond pump-probe spectroscopy is used to explore the excited-state dynamics of TPE in polar an...
Femtosecond pump-probe spectroscopy is used to explore the excited-state dynamics of TPE in polar an...
Femtosecond pump-probe spectroscopy is used to explore the excited-state dynamics of TPE in polar an...
The photophysical properties of tetraphenylethene (TPE) compounds may differ widely depending on the...
The excited-state dynamics of oligomeric phenyleneethynylenes (OPEs) of various length and substitut...
International audienceReal-time dynamics of the electronically excited open-ring isomer of 1,2-bis(2...
A realistic dynamical simulation is reported for ultrafast laser excitation and rotational de-excita...
The excited-state dynamics of oligomeric phenyleneethynylenes (OPEs) of various length and substitut...
Picosecond and femtosecond time resolved laser experiments were carried out to investigate the photo...
Excited state ultrafast conformational reorganization is recognized as an important phenomenon that ...
The ultrafast excited-state dynamics of hexamethylsexithiophene in solution are investigated by femt...
Ultrafast excited-state processes play a key role in organic electronics and photovoltaics, governin...
International audienceAlthough tetraphenylethylene (TPE) and its derivatives have been the most comm...