Förster resonance energy transfer (FRET) entails the transfer of energy from a photoexcited energy donor to a close energy acceptor. In this regard, quantum dots (QDs), as donors, are quenched when they are next to an acceptor material. Graphite, carbon nanotubes (CNTs), carbon nanofibers (CNFs) and graphene oxide (GO) were explored as energy acceptors of QD FRET donors in the solid phase. In our setup, the higher estimated values of quenching efficiency for each material are as follows: graphite, 66 ± 17%; CNTs, 71 ± 1%; CNFs, 74 ± 07% and GO, 97 ± 1%. Among these materials, GO is the best acceptor of QD FRET donors in the solid phase. Such an ultrahigh quenching efficiency by GO and the proposed simple mechanism may open the way to severa...
Carbon nanostructures are ideal substrates for functionalization with molecules since they consist o...
We report efficient nonradiative energy transfer (NRET) from core–shell, semiconducting quantum dots...
© 2014 Dr. Gary BeaneThe development of sensing platforms capable of accurately and sensitively dete...
Förster resonance energy transfer (FRET) entails the transfer of energy from a photoexcited energy d...
A new design for a quasi-solid-state Forster resonance energy transfer (FRET) enabled solar cell wit...
Förster (or fluorescence) resonance energy transfer amongst semiconductor quantum dots (QDs) is revi...
Förster (or fluorescence) resonance energy transfer amongst semiconductor quantum dots (QDs) is revi...
The unique optical properties of quantum dots (QDs) have been widely used to develop bioassays based...
International audienceThe analysis of biomolecular interactions using quantum dots (QDs) as both FRE...
Cataloged from PDF version of article.Solution processed graphene variants including graphene oxide ...
We propose two effective approaches to enhance the Förster resonance energy transfer (FRET) efficien...
Solution processed graphene variants including graphene oxide (GO) and reduced graphene oxide (RGO) ...
Understanding how semiconductor quantum dots (QDs) engage in photoinduced energy transfer with carbo...
Tunable photoluminescence performance of graphene quantum dots (GQDs) is one of the most important t...
We show that direct coupling of a dye-labelled DNA ( acceptor) to a quantum dot (QD) donor significa...
Carbon nanostructures are ideal substrates for functionalization with molecules since they consist o...
We report efficient nonradiative energy transfer (NRET) from core–shell, semiconducting quantum dots...
© 2014 Dr. Gary BeaneThe development of sensing platforms capable of accurately and sensitively dete...
Förster resonance energy transfer (FRET) entails the transfer of energy from a photoexcited energy d...
A new design for a quasi-solid-state Forster resonance energy transfer (FRET) enabled solar cell wit...
Förster (or fluorescence) resonance energy transfer amongst semiconductor quantum dots (QDs) is revi...
Förster (or fluorescence) resonance energy transfer amongst semiconductor quantum dots (QDs) is revi...
The unique optical properties of quantum dots (QDs) have been widely used to develop bioassays based...
International audienceThe analysis of biomolecular interactions using quantum dots (QDs) as both FRE...
Cataloged from PDF version of article.Solution processed graphene variants including graphene oxide ...
We propose two effective approaches to enhance the Förster resonance energy transfer (FRET) efficien...
Solution processed graphene variants including graphene oxide (GO) and reduced graphene oxide (RGO) ...
Understanding how semiconductor quantum dots (QDs) engage in photoinduced energy transfer with carbo...
Tunable photoluminescence performance of graphene quantum dots (GQDs) is one of the most important t...
We show that direct coupling of a dye-labelled DNA ( acceptor) to a quantum dot (QD) donor significa...
Carbon nanostructures are ideal substrates for functionalization with molecules since they consist o...
We report efficient nonradiative energy transfer (NRET) from core–shell, semiconducting quantum dots...
© 2014 Dr. Gary BeaneThe development of sensing platforms capable of accurately and sensitively dete...