We report the properties of perylene-nanotube complexes that form efficient energy transfer systems. Most perylene-derivatives yield similar ratios between transfer and direct luminescence (0.66 ± 0.04). The photoluminescence spectra of the free compounds and the transfer complex are similar indicating that perylene and nanotubes act as separate systems. A further increase in interaction yields 40% higher transfer rates and luminescence excitation spectra that indicate a change in stacking of the perylene on the nanotube wall. All measurements are consistent with a transfer mechanism based on a dipole-dipole interaction at a distance much smaller than the Förster radius
Multichromophore perylene arrays were designed and synthesized to have extremely efficient resonance...
Tailoring the properties of carbon nanotubes by chemical functionalization is one of the key challen...
The energy transfer from fluorene-based polymers such as poly(9,9-dioctylfluoreny-2,7-diyl) (PFO) an...
We report the properties of perylene-nanotube complexes that form efficient energy transfer systems....
We report the properties of perylene-nanotube complexes that form efficient energy transfer systems....
A functional surfactant designed to solubilize and individualize nanotubes efficiently in aqueous me...
Understanding the nature of photoinduced processes in organic molecules is essential for the design ...
International audienceThe delocalized pi-electronic system of carbon nanotubes allows them to link n...
We study the process of electronic excitation energy transfer from a fluorophore to the electronic e...
Communication oraleChemical functionalization of carbon nanotubes is one of the key challenges towar...
In this report, we have examined the energy transfer effect from fluorene-based polymers namely, Pol...
Single-walled carbon nanotubes have been efficiently dispersed in an organic solvent using the semic...
In this thesis we create nanotube-chromophore energy transfer systems and characterize them opticall...
Dans le domaine du photovoltaïque, les cellules hybrides organiques sont une des voies les plus prom...
The synthesis, photophysical, redox, and molecular-orbital characteristics of three perylene–tetrapy...
Multichromophore perylene arrays were designed and synthesized to have extremely efficient resonance...
Tailoring the properties of carbon nanotubes by chemical functionalization is one of the key challen...
The energy transfer from fluorene-based polymers such as poly(9,9-dioctylfluoreny-2,7-diyl) (PFO) an...
We report the properties of perylene-nanotube complexes that form efficient energy transfer systems....
We report the properties of perylene-nanotube complexes that form efficient energy transfer systems....
A functional surfactant designed to solubilize and individualize nanotubes efficiently in aqueous me...
Understanding the nature of photoinduced processes in organic molecules is essential for the design ...
International audienceThe delocalized pi-electronic system of carbon nanotubes allows them to link n...
We study the process of electronic excitation energy transfer from a fluorophore to the electronic e...
Communication oraleChemical functionalization of carbon nanotubes is one of the key challenges towar...
In this report, we have examined the energy transfer effect from fluorene-based polymers namely, Pol...
Single-walled carbon nanotubes have been efficiently dispersed in an organic solvent using the semic...
In this thesis we create nanotube-chromophore energy transfer systems and characterize them opticall...
Dans le domaine du photovoltaïque, les cellules hybrides organiques sont une des voies les plus prom...
The synthesis, photophysical, redox, and molecular-orbital characteristics of three perylene–tetrapy...
Multichromophore perylene arrays were designed and synthesized to have extremely efficient resonance...
Tailoring the properties of carbon nanotubes by chemical functionalization is one of the key challen...
The energy transfer from fluorene-based polymers such as poly(9,9-dioctylfluoreny-2,7-diyl) (PFO) an...