The efficient conversion of light into electricity or chemical fuels is a fundamental challenge. In artificial photosynthetic and photovoltaic devices, this conversion is generally thought to happen on ultrafast, femto-to-picosecond timescales and to involve an incoherent electron transfer process. In some biological systems, however, there is growing evidence that the coherent motion of electronic wavepackets is an essential primary step, raising questions about the role of quantum coherence in artificial devices. Here we investigate the primary charge-transfer process in a supramolecular triad, a prototypical artificial reaction centre. Combining high time-resolution femtosecond spectroscopy and time-dependent density functional theory, w...
Charge separation dynamics after the absorption of a photon is a fundamental process relevant both f...
Charge separation dynamics after the absorption of a photon is a fundamental process relevant both f...
To uncover the mechanism behind the high photo-electronic conversion efficiency in natural photosynt...
The efficient conversion of light into electricity or chemical fuels is a fundamental challenge. In ...
The efficient conversion of light into electricity or chemical fuels is a fundamental challenge. In ...
The efficient conversion of light into electricity or chemical fuels is a fundamental challenge. In ...
The efficient conversion of light into electricity or chemical fuels is a fundamental challenge. In ...
In artificial light harvesting systems the conversion of light into charges or chemical energy happe...
In artificial light harvesting systems the conversion of light into charges or chemical energy happe...
Ultrafast spectroscopy and quantum-dynamics simulations of an artificial supramolecular light-harves...
Ultrafast spectroscopy and quantum-dynamics simulations of an artificial supramolecular light-harves...
Ultrafast spectroscopy and quantum-dynamics simulations of an artificial supramolecular light-harves...
Ultrafast spectroscopy and quantum-dynamics simulations of an artificial supramolecular light-harves...
Ultrafast spectroscopy and quantum-dynamics simulations of an artificial supramolecular light-harves...
Ultrafast spectroscopy and quantum-dynamics simulations of an artificial supramolecular light-harves...
Charge separation dynamics after the absorption of a photon is a fundamental process relevant both f...
Charge separation dynamics after the absorption of a photon is a fundamental process relevant both f...
To uncover the mechanism behind the high photo-electronic conversion efficiency in natural photosynt...
The efficient conversion of light into electricity or chemical fuels is a fundamental challenge. In ...
The efficient conversion of light into electricity or chemical fuels is a fundamental challenge. In ...
The efficient conversion of light into electricity or chemical fuels is a fundamental challenge. In ...
The efficient conversion of light into electricity or chemical fuels is a fundamental challenge. In ...
In artificial light harvesting systems the conversion of light into charges or chemical energy happe...
In artificial light harvesting systems the conversion of light into charges or chemical energy happe...
Ultrafast spectroscopy and quantum-dynamics simulations of an artificial supramolecular light-harves...
Ultrafast spectroscopy and quantum-dynamics simulations of an artificial supramolecular light-harves...
Ultrafast spectroscopy and quantum-dynamics simulations of an artificial supramolecular light-harves...
Ultrafast spectroscopy and quantum-dynamics simulations of an artificial supramolecular light-harves...
Ultrafast spectroscopy and quantum-dynamics simulations of an artificial supramolecular light-harves...
Ultrafast spectroscopy and quantum-dynamics simulations of an artificial supramolecular light-harves...
Charge separation dynamics after the absorption of a photon is a fundamental process relevant both f...
Charge separation dynamics after the absorption of a photon is a fundamental process relevant both f...
To uncover the mechanism behind the high photo-electronic conversion efficiency in natural photosynt...