Triplet–triplet energy transfer in benzophenone–fluorene and benzophenone–fluorene–naphthalene molecules is theoretically investigated by using the rate theories and electronic structure calculations established for electron transfer. From the calculated electronic couplings for the single-step tunneling and multistep hopping pathways of the energy transfer from the donor benzophenone to the acceptor naphthalene, it is found that the tunneling comes from the direct electronic couplings between the donor and acceptor states, other than the coupling via the virtual bridge state in the conventional superexchange mechanism. The mode-specific reorganization energy calculations reveal that only the several high-frequency modes dominate the energy...
ABSTRACT: We simulate the dynamics of triplet−triplet energy transfer in a donor−bridge−acceptor sys...
The electronic coupling for triplet energy transfer is calculated by time-dependent density function...
The possibility to optimize optoelectronic devices, such as organic light-emitting diodes or solar c...
Triplet-triplet energy transfer in benzophenone-fluorene and benzophenone-fluorene-naphthalene molec...
Triplet energy transfer (TT), a key process in molecular and organic electronics, generally occurs b...
International audienceIn benzophenone, intersystem crossing occurs efficiently between S1(nπ*) and t...
Fermi golden rule and second-order cumulant expansion of the time-dependent density matrix have been...
Organic molecules have revealed to be extremely useful building blocks for developing efficient opto...
Triplet energy transfer (TET) from aromatic donors to 1,3,5,7-cyclooctatetraene (COT) is an extreme ...
Driving force effects on electron transfer rates in molecular donor–bridge–acceptor systems have bee...
The attenuation factor, β, for the distance dependence of electron exchange reactions is a sensitive...
Electron transfer reactions through Donor-Bridge-Acceptor (DBA) molecules are important as they cons...
The rate of electron tunneling in mol. donor-bridge-acceptor (D-B-A) systems is detd. both by the tu...
The transition flux formula for the coupling matrix element of long-distance electron transfer react...
This thesis is a contribution to the understanding of bridge mediation of electron exchange processe...
ABSTRACT: We simulate the dynamics of triplet−triplet energy transfer in a donor−bridge−acceptor sys...
The electronic coupling for triplet energy transfer is calculated by time-dependent density function...
The possibility to optimize optoelectronic devices, such as organic light-emitting diodes or solar c...
Triplet-triplet energy transfer in benzophenone-fluorene and benzophenone-fluorene-naphthalene molec...
Triplet energy transfer (TT), a key process in molecular and organic electronics, generally occurs b...
International audienceIn benzophenone, intersystem crossing occurs efficiently between S1(nπ*) and t...
Fermi golden rule and second-order cumulant expansion of the time-dependent density matrix have been...
Organic molecules have revealed to be extremely useful building blocks for developing efficient opto...
Triplet energy transfer (TET) from aromatic donors to 1,3,5,7-cyclooctatetraene (COT) is an extreme ...
Driving force effects on electron transfer rates in molecular donor–bridge–acceptor systems have bee...
The attenuation factor, β, for the distance dependence of electron exchange reactions is a sensitive...
Electron transfer reactions through Donor-Bridge-Acceptor (DBA) molecules are important as they cons...
The rate of electron tunneling in mol. donor-bridge-acceptor (D-B-A) systems is detd. both by the tu...
The transition flux formula for the coupling matrix element of long-distance electron transfer react...
This thesis is a contribution to the understanding of bridge mediation of electron exchange processe...
ABSTRACT: We simulate the dynamics of triplet−triplet energy transfer in a donor−bridge−acceptor sys...
The electronic coupling for triplet energy transfer is calculated by time-dependent density function...
The possibility to optimize optoelectronic devices, such as organic light-emitting diodes or solar c...