A multiscale approach to the dynamics of resonant energy transfer (RET) is presented, combining DFT and TD-DFT results on the energy donor (D) and acceptor (A) moieties with an extensive equilibrium and non-equilibrium molecular dynamics (MD) analysis of a bound D–A pair in solution to build a coarse-grained kinetic model. We demonstrate that a thorough MD study is needed to properly address RET: the enormous configuration space visited by the system cannot be reliably sampled accounting only for a few representative configurations. Moreover, the conformational motion of the RET pair, occurring in a similar time scale as the RET process itself, leads to a sizable increase of the overall process efficiency
On the propagation of resonant radiation through an optically dense system, photon capture is common...
Because of the sensitivity of the rate of Coulomb interaction induced long range resonance energy tr...
Resonance energy transfer is a spectroscopic process whose relevance in all major areas of science i...
A multiscale approach to the dynamics of resonant energy transfer (RET) is presented, combining DFT ...
Resonance energy transfer (RET) is a complex phenomenon where energy is transferred between two non-...
Resonanceenergy transfer (RET) is the principal mechanism for the intermolecular or intramolecular r...
Ultrafast intramolecular electronic energy transfer in a conjugated donor-acceptor system is simulat...
Electronic energy transfer is widely used as a molecular ruler to interrogate the structure of bioma...
An extension of previous theoretical work on the unified theory of radiative and radiationless inter...
Electrostatic intermolecular interactions lie at the heart of both the Förster model for resonance ...
The use of the Förster model to predict the dynamics of resonant electronic energy transfer (RET) in...
Resonance energy transfer, also known as Förster- or fluorescence- resonance energy transfer, or ele...
AbstractIn Förster resonance energy transfer (FRET) experiments, extracting accurate structural info...
We provide a critical examination of two different methods for generating a donoracceptor electronic...
Fluorescence resonance energy transfer (FRET) during folding of a model protein, HP-36, is investiga...
On the propagation of resonant radiation through an optically dense system, photon capture is common...
Because of the sensitivity of the rate of Coulomb interaction induced long range resonance energy tr...
Resonance energy transfer is a spectroscopic process whose relevance in all major areas of science i...
A multiscale approach to the dynamics of resonant energy transfer (RET) is presented, combining DFT ...
Resonance energy transfer (RET) is a complex phenomenon where energy is transferred between two non-...
Resonanceenergy transfer (RET) is the principal mechanism for the intermolecular or intramolecular r...
Ultrafast intramolecular electronic energy transfer in a conjugated donor-acceptor system is simulat...
Electronic energy transfer is widely used as a molecular ruler to interrogate the structure of bioma...
An extension of previous theoretical work on the unified theory of radiative and radiationless inter...
Electrostatic intermolecular interactions lie at the heart of both the Förster model for resonance ...
The use of the Förster model to predict the dynamics of resonant electronic energy transfer (RET) in...
Resonance energy transfer, also known as Förster- or fluorescence- resonance energy transfer, or ele...
AbstractIn Förster resonance energy transfer (FRET) experiments, extracting accurate structural info...
We provide a critical examination of two different methods for generating a donoracceptor electronic...
Fluorescence resonance energy transfer (FRET) during folding of a model protein, HP-36, is investiga...
On the propagation of resonant radiation through an optically dense system, photon capture is common...
Because of the sensitivity of the rate of Coulomb interaction induced long range resonance energy tr...
Resonance energy transfer is a spectroscopic process whose relevance in all major areas of science i...