We have studied the energy transfer dynamics in an artificial light-harvesting dyad composed of a phthalocyanine (Pc) covalently linked to a carotenoid (Car). The combination of high temporal resolution transient absorption spectroscopy with global and target analysis allowed us to quantify the efficiency of the energy transfer from the
Under excess illumination, plant photosystem II dissipates excess energy through the quenching of ch...
Under excess illumination, plant photosystem II dissipates excess energy through the quenching of ch...
Due to the predicted energy crisis when fossil fuels will be exhausted it is important to search for...
We temporally resolved energy transfer kinetics in an artificial light-harvesting dyad composed of a...
We temporally resolved energy transfer kinetics in an artificial light-harvesting dyad composed of a...
We present results from transient absorption spectroscopy on a series of artificial light-harvesting...
Photophysical investigations of molecular donor-acceptor systems have helped elucidate many details ...
Under excess illumination, photosystem II of plants dissipates excess energy through the quenching o...
The initial energy transfer steps in photosynthesis occur on ultrafast timescales. We analyze the ca...
We present results from fluorescence excitation and transient absorption spectroscopy on a series of...
Artificial light-harvesting constructs were synthesized by covalently linking two carotenoids to the...
Functional mimics of a photosynthetic antenna-reaction center complex comprising five bis(phenylethy...
Development of efficient light-harvesting technologies hinges on our understanding of the fundamenta...
AbstractUltrafast dynamics of a reconstituted Lhca4 subunit from the peripheral LHCI-730 antenna of ...
The dependence of excitation energy transfer kinetics on the electronic state of the acceptor (groun...
Under excess illumination, plant photosystem II dissipates excess energy through the quenching of ch...
Under excess illumination, plant photosystem II dissipates excess energy through the quenching of ch...
Due to the predicted energy crisis when fossil fuels will be exhausted it is important to search for...
We temporally resolved energy transfer kinetics in an artificial light-harvesting dyad composed of a...
We temporally resolved energy transfer kinetics in an artificial light-harvesting dyad composed of a...
We present results from transient absorption spectroscopy on a series of artificial light-harvesting...
Photophysical investigations of molecular donor-acceptor systems have helped elucidate many details ...
Under excess illumination, photosystem II of plants dissipates excess energy through the quenching o...
The initial energy transfer steps in photosynthesis occur on ultrafast timescales. We analyze the ca...
We present results from fluorescence excitation and transient absorption spectroscopy on a series of...
Artificial light-harvesting constructs were synthesized by covalently linking two carotenoids to the...
Functional mimics of a photosynthetic antenna-reaction center complex comprising five bis(phenylethy...
Development of efficient light-harvesting technologies hinges on our understanding of the fundamenta...
AbstractUltrafast dynamics of a reconstituted Lhca4 subunit from the peripheral LHCI-730 antenna of ...
The dependence of excitation energy transfer kinetics on the electronic state of the acceptor (groun...
Under excess illumination, plant photosystem II dissipates excess energy through the quenching of ch...
Under excess illumination, plant photosystem II dissipates excess energy through the quenching of ch...
Due to the predicted energy crisis when fossil fuels will be exhausted it is important to search for...