Excited state intramolecular proton transfer (ESIPT) dynamics of the o-hydroxy analogs of the green fluorescent protein (GFP) chromophore have been investigated by time-resolved spectroscopies and theoretical calculations. These molecules comprise an excellent system to investigate the effect of electronic properties on the energetics and dynamics of ESIPT and to realize applications in photonics. Time-resolved fluorescence with high enough resolution was employed to record the dynamics and the nuclear wave packets in the excited product state exclusively in conjunction with quantum chemical methods. The ESIPT are ultrafast occurring in 30 fs for the compounds employed in this work. Although the ESIPT rates are not affected by the electroni...
The green fluorescent protein is a key technology in bioimaging. In this critical review, we conside...
We report on the excited-state behavior of proton-transfer phenanthroimidazole derivatives, such as ...
Proton transfer reaction is one of the most fundamental processes in chemistry and life science. Exc...
The time and frequency resolved optical response of wild-type green fluorescent protein (wt-GFP) has...
The time and frequency resolved optical response of wild-type green fluorescent protein (wt-GFP) has...
In this paper, we present the results from model real-time quantum dynamical calculations of the pro...
We simulated an excited state proton transfer in green fluorescent protein by excited state ab initi...
We simulated an excited state proton transfer in green fluorescent protein by excited state ab initi...
We simulated an excited state proton transfer in green fluorescent protein by excited state ab initi...
The photophysical properties of the wild type green fluorescent protein (wtGFP), the isolated GFP ch...
The time and frequency resolved optical response of wild-type green fluorescent protein (wt-GFP) has...
The photophysical properties of the wild type green fluorescent protein (wtGFP), the isolated GFP ch...
The chemical locking of the central single bond in core chromophores of green fluorescent proteins (...
Proton transfer plays an important role in the optical properties of green fluorescent protein (GFP)...
The green fluorescent protein is a key technology in bioimaging. In this critical review, we conside...
The green fluorescent protein is a key technology in bioimaging. In this critical review, we conside...
We report on the excited-state behavior of proton-transfer phenanthroimidazole derivatives, such as ...
Proton transfer reaction is one of the most fundamental processes in chemistry and life science. Exc...
The time and frequency resolved optical response of wild-type green fluorescent protein (wt-GFP) has...
The time and frequency resolved optical response of wild-type green fluorescent protein (wt-GFP) has...
In this paper, we present the results from model real-time quantum dynamical calculations of the pro...
We simulated an excited state proton transfer in green fluorescent protein by excited state ab initi...
We simulated an excited state proton transfer in green fluorescent protein by excited state ab initi...
We simulated an excited state proton transfer in green fluorescent protein by excited state ab initi...
The photophysical properties of the wild type green fluorescent protein (wtGFP), the isolated GFP ch...
The time and frequency resolved optical response of wild-type green fluorescent protein (wt-GFP) has...
The photophysical properties of the wild type green fluorescent protein (wtGFP), the isolated GFP ch...
The chemical locking of the central single bond in core chromophores of green fluorescent proteins (...
Proton transfer plays an important role in the optical properties of green fluorescent protein (GFP)...
The green fluorescent protein is a key technology in bioimaging. In this critical review, we conside...
The green fluorescent protein is a key technology in bioimaging. In this critical review, we conside...
We report on the excited-state behavior of proton-transfer phenanthroimidazole derivatives, such as ...
Proton transfer reaction is one of the most fundamental processes in chemistry and life science. Exc...