The near-field Coulomb interaction between a nanoemitter and a graphene monolayer results in strong Förster-type resonant energy transfer and subsequent fluorescence quenching. Here, we investigate the distance dependence of the energy transfer rate from individual, (i) zero-dimensional CdSe/CdS nanocrystals and (ii) two-dimensional CdSe/CdS/ZnS nanoplatelets to a graphene monolayer. For increasing distances <i>d</i>, the energy transfer rate from individual nanocrystals to graphene decays as 1/<i>d</i><sup>4</sup>. In contrast, the distance dependence of the energy transfer rate from a two-dimensional nanoplatelet to graphene deviates from a simple power law but is well described by a theoretical model, which considers a thermal distribut...
A hybrid structure of the quasi-2D colloidal semiconductor quantum wells assembled with a single lay...
Mes travaux de thèse portent sur l’interaction de type FRET (tranfert d’énergie résonant de Förster)...
We study the distance dependence of the rate of resonance energy transfer from the excited state of ...
The near-field interaction between fluorescent emitters and graphene exhibits rich physics associate...
6 pags, 4 figsThe near-field interaction between fluorescent emitters and graphene exhibits rich phy...
The near-field interaction between fluorescent emitters and graphene exhibits rich physics associate...
In this work we quantify the distance dependence for the extraction of energy from excited chromopho...
My PhD subject is the FRET interaction (Förster-like resonant energy transfer) between single colloi...
Solution processed graphene variants including graphene oxide (GO) and reduced graphene oxide (RGO) ...
Deviations from the usual R (-6) dependence of the rate of fluorescence resonance energy transfer (F...
In our previous report on resonance energy transfer from a dye molecule to graphene [J. Chem. Phys.1...
We present a theoretical investigation of the energy transfer efficiency between quantum systems pla...
A new class of optoelectronic nanodevices consisting of 0D semiconductor nanocrystals and 2D single ...
International audienceFluorescent emitters like ions, dye molecules or semiconductor nanoparticles a...
We report efficient nonradiative energy transfer (NRET) from core–shell, semiconducting quantum dots...
A hybrid structure of the quasi-2D colloidal semiconductor quantum wells assembled with a single lay...
Mes travaux de thèse portent sur l’interaction de type FRET (tranfert d’énergie résonant de Förster)...
We study the distance dependence of the rate of resonance energy transfer from the excited state of ...
The near-field interaction between fluorescent emitters and graphene exhibits rich physics associate...
6 pags, 4 figsThe near-field interaction between fluorescent emitters and graphene exhibits rich phy...
The near-field interaction between fluorescent emitters and graphene exhibits rich physics associate...
In this work we quantify the distance dependence for the extraction of energy from excited chromopho...
My PhD subject is the FRET interaction (Förster-like resonant energy transfer) between single colloi...
Solution processed graphene variants including graphene oxide (GO) and reduced graphene oxide (RGO) ...
Deviations from the usual R (-6) dependence of the rate of fluorescence resonance energy transfer (F...
In our previous report on resonance energy transfer from a dye molecule to graphene [J. Chem. Phys.1...
We present a theoretical investigation of the energy transfer efficiency between quantum systems pla...
A new class of optoelectronic nanodevices consisting of 0D semiconductor nanocrystals and 2D single ...
International audienceFluorescent emitters like ions, dye molecules or semiconductor nanoparticles a...
We report efficient nonradiative energy transfer (NRET) from core–shell, semiconducting quantum dots...
A hybrid structure of the quasi-2D colloidal semiconductor quantum wells assembled with a single lay...
Mes travaux de thèse portent sur l’interaction de type FRET (tranfert d’énergie résonant de Förster)...
We study the distance dependence of the rate of resonance energy transfer from the excited state of ...