Charge separation dynamics after the absorption of a photon is a fundamental process relevant both for photosynthetic reaction centers and artificial solar conversion devices. It has been proposed that quantum coherence plays a role in the formation of charge carriers in organic photovoltaics, but experimental proofs have been lacking. Here we report experimental evidence of coherence in the charge separation process in organic donor/acceptor heterojunctions, in the form of low frequency oscillatory signature in the kinetics of the transient absorption and nonlinear two-dimensional photocurrent spectroscopy. The coherence plays a decisive role in the initial ~200 femtoseconds as we observe distinct experimental signatures of coherent photoc...
Almost all life on Earth depends on the products of photosynthesis — the biochemical process whereby...
The high efficiency of charge generation within organic photovoltaic blends apparently contrasts wit...
Photosynthetic antenna complexes harvest sunlight and efficiently transport energy to the reaction c...
Charge separation dynamics after the absorption of a photon is a fundamental process relevant both f...
The efficient conversion of light into electricity or chemical fuels is a fundamental challenge. In ...
Combining high-time resolution pump-probe spectroscopy and time-dependent density functional theory ...
The crucial step in the conversion of solar to chemical energy in photosynthesis takes place in the ...
We study the quantum dissipative dynamics of charge transfer excitons localizing and dissociating at...
All-organic-based photovoltaic solar cells have attracted considerable attention because of their lo...
Combining high-time resolution pump-probe spectroscopy and timedependent density functional theory c...
One of the most surprising and significant advances in the study of the photosynthetic light- harves...
In organic photovoltaics, the mechanism by which free electrons and holes are generated, overcoming ...
Experimental/theoretical evidence for sustained vibration-assisted electronic (vibronic) coherence i...
Almost all life on Earth depends on the products of photosynthesis — the biochemical process whereby...
The high efficiency of charge generation within organic photovoltaic blends apparently contrasts wit...
Photosynthetic antenna complexes harvest sunlight and efficiently transport energy to the reaction c...
Charge separation dynamics after the absorption of a photon is a fundamental process relevant both f...
The efficient conversion of light into electricity or chemical fuels is a fundamental challenge. In ...
Combining high-time resolution pump-probe spectroscopy and time-dependent density functional theory ...
The crucial step in the conversion of solar to chemical energy in photosynthesis takes place in the ...
We study the quantum dissipative dynamics of charge transfer excitons localizing and dissociating at...
All-organic-based photovoltaic solar cells have attracted considerable attention because of their lo...
Combining high-time resolution pump-probe spectroscopy and timedependent density functional theory c...
One of the most surprising and significant advances in the study of the photosynthetic light- harves...
In organic photovoltaics, the mechanism by which free electrons and holes are generated, overcoming ...
Experimental/theoretical evidence for sustained vibration-assisted electronic (vibronic) coherence i...
Almost all life on Earth depends on the products of photosynthesis — the biochemical process whereby...
The high efficiency of charge generation within organic photovoltaic blends apparently contrasts wit...
Photosynthetic antenna complexes harvest sunlight and efficiently transport energy to the reaction c...