Due to their substantial fluorescence quantum yields in the crystalline phase, propeller-shaped molecules have recently gained significant attention as potential emissive materials for optoelectronic applications. For the family of cyclopentadiene derivatives, light-emission is highly dependent on the nature of heteroatomic substitutions. In this paper, we investigate excited state relaxation pathways in the tetraphenyl-furan molecule (TPF), which in contrast with other molecules in the family, shows emission quenching in the solid-state. For the singlet manifold, our calculations show nonradiative pathways associated with C-O elongation are blocked in both vacuum and the solid state. A fraction of the population can be transferred to the t...
Understanding the excited-state dynamics and conformational relaxation in thermally activated delaye...
The design of materials with enhanced luminescence properties is a fast-developing field due to the ...
International audienceNowadays, Thermally Activated Delayed Fluorescence (TADF) compounds have prove...
Due to their substantial fluorescence quantum yields in the crystalline phase, propeller-shaped mole...
The photophysical properties of tetraphenylethene (TPE) compounds may differ widely depending on the...
We present the synthesis, optoelectronic characterization, and a detailed theoretical study of DMAC-...
The ground state potential energy surface of the model molecular rotor 2-cyclopentylidene-tetrahydro...
cis,cis-1,2,3,4-Tetraphenylbutadiene (TPBD) exhibits aggregation-induced emission (AIE) in the UV-bl...
Organic molecular crystals are attractive materials for luminescent applications because of their pr...
Tetraphenylethylene is a prototypical example of a molecule displaying aggregation-induced emission....
Three organic semiconductors consisting of thiophene, furan, and phenylene groups showed either one ...
Understanding the excited-state dynamics and conformational relaxation in thermallyactivated delayed...
The excited state dynamics of 2-cyclopentylidene-tetrahydrofuran (CPTHF) is investigated using quant...
Purely aromatic hydrocarbon materials with ultralong room-temperature phosphorescence (RTP) were rep...
International audienceThermally Activated Delayed Fluorescence (TADF) molecules contribute to the li...
Understanding the excited-state dynamics and conformational relaxation in thermally activated delaye...
The design of materials with enhanced luminescence properties is a fast-developing field due to the ...
International audienceNowadays, Thermally Activated Delayed Fluorescence (TADF) compounds have prove...
Due to their substantial fluorescence quantum yields in the crystalline phase, propeller-shaped mole...
The photophysical properties of tetraphenylethene (TPE) compounds may differ widely depending on the...
We present the synthesis, optoelectronic characterization, and a detailed theoretical study of DMAC-...
The ground state potential energy surface of the model molecular rotor 2-cyclopentylidene-tetrahydro...
cis,cis-1,2,3,4-Tetraphenylbutadiene (TPBD) exhibits aggregation-induced emission (AIE) in the UV-bl...
Organic molecular crystals are attractive materials for luminescent applications because of their pr...
Tetraphenylethylene is a prototypical example of a molecule displaying aggregation-induced emission....
Three organic semiconductors consisting of thiophene, furan, and phenylene groups showed either one ...
Understanding the excited-state dynamics and conformational relaxation in thermallyactivated delayed...
The excited state dynamics of 2-cyclopentylidene-tetrahydrofuran (CPTHF) is investigated using quant...
Purely aromatic hydrocarbon materials with ultralong room-temperature phosphorescence (RTP) were rep...
International audienceThermally Activated Delayed Fluorescence (TADF) molecules contribute to the li...
Understanding the excited-state dynamics and conformational relaxation in thermally activated delaye...
The design of materials with enhanced luminescence properties is a fast-developing field due to the ...
International audienceNowadays, Thermally Activated Delayed Fluorescence (TADF) compounds have prove...