Using coherent two-dimensional (2D) electronic spectroscopy in fully noncollinear geometry, we observe the excitonic coupling of β,β'-linked bis[tetraphenylporphyrinato-zinc(II)] on an ultrafast timescale in the excited state. The results for two states in the Soret band originating from an excitonic splitting are explained by population transfer with approximately 100 fs from the energetically higher to the lower excitonic state. This interpretation is consistent with exemplary calculations of 2D spectra for a model four-level system with coupling
Two-dimensional electronic spectroscopy (2D-ES) is a cutting edge experimental method to probe ultr...
Persistence of vibrational coherence in electronic transition has been noted especially in biochemic...
Two-dimensional fluorescence spectroscopy (2D FS) is applied to determine the conformation and femto...
Molecular conformational changes in electronic excited states play a key role in numerous light-acti...
The excited-state dynamics of two molecular dyads, consisting of zinc (1) and free-base (2) porphyri...
Molecular conformational changes in electronic excited states play a key role in numerous light-acti...
The excited-state dynamics of two molecular dyads, consisting of zinc (1) and free-base (2) porphyri...
The excited-state dynamics of two triads consisting of a naphthalenediimide (cNDI) substituted at th...
The excited-state dynamics of two energy donor–bridge–acceptor (D–B–A) systems consisting of a zinc ...
Reports of long-lived exciton coherences have lead researchers to expect that model dimer systems in...
Using the nonperturbative approach to the calculation of nonlinear optical spectra developed in a fo...
Conjugated porphyrin arrays are heavily investigated as efficient molecular systems for photosynthes...
The nature of optical excitations and the spatial extent of excitons in organic semiconductors, both...
Two-dimensional fluorescence spectroscopy (2D FS) is applied to determine the conformation and femto...
Two-dimensional electronic spectroscopy (2D-ES) is a cutting edge experimental method to probe ultr...
Persistence of vibrational coherence in electronic transition has been noted especially in biochemic...
Two-dimensional fluorescence spectroscopy (2D FS) is applied to determine the conformation and femto...
Molecular conformational changes in electronic excited states play a key role in numerous light-acti...
The excited-state dynamics of two molecular dyads, consisting of zinc (1) and free-base (2) porphyri...
Molecular conformational changes in electronic excited states play a key role in numerous light-acti...
The excited-state dynamics of two molecular dyads, consisting of zinc (1) and free-base (2) porphyri...
The excited-state dynamics of two triads consisting of a naphthalenediimide (cNDI) substituted at th...
The excited-state dynamics of two energy donor–bridge–acceptor (D–B–A) systems consisting of a zinc ...
Reports of long-lived exciton coherences have lead researchers to expect that model dimer systems in...
Using the nonperturbative approach to the calculation of nonlinear optical spectra developed in a fo...
Conjugated porphyrin arrays are heavily investigated as efficient molecular systems for photosynthes...
The nature of optical excitations and the spatial extent of excitons in organic semiconductors, both...
Two-dimensional fluorescence spectroscopy (2D FS) is applied to determine the conformation and femto...
Two-dimensional electronic spectroscopy (2D-ES) is a cutting edge experimental method to probe ultr...
Persistence of vibrational coherence in electronic transition has been noted especially in biochemic...
Two-dimensional fluorescence spectroscopy (2D FS) is applied to determine the conformation and femto...