Here we investigate the energy transfer rates of a F\uf6rster resonance energy transfer (FRET) pair positioned in close proximity to a 5 nm gold nanoparticle (AuNP) on a DNA origami construct. We study the distance dependence of the FRET rate by varying the location of the donor molecule, D, relative to the AuNP while maintaining a fixed location of the acceptor molecule, A. The presence of the AuNP induces an alteration in the spontaneous emission of the donor (including radiative and non-radiative rates) which is strongly dependent on the distance between the donor and AuNP surface. Simultaneously, the energy transfer rates are enhanced at shorter D-A (and D-AuNP) distances. Overall, in addition to the direct influence of the acceptor and...
We study the distance-dependent quenching of fluorescence due to a metallic nanoparticle in proximit...
Metallic nanoparticles were shown to affect Förster energy transfer between fluorophore pairs. Howe...
Conventional Förster resonance energy transfer (FRET) processes involving a pair of fluorophore and ...
Here we investigate the energy transfer rates of a Förster resonance energy transfer (FRET) pair pos...
Metallic nanoparticles were shown to affect Förster energy transfer between fluorophore pairs. Howev...
We used DNA origami as a platform to coassemble a 20 nm gold nanoparticle (AuNP) and an organic fluo...
Metallic nanoparticles were shown to affect Förster energy transfer between fluorophore pairs. Howev...
Metallic nanoparticles were shown to affect Förster energy transfer between fluorophore pairs. Howev...
Metallic nanoparticles were shown to affect Förster energy transfer between fluorophore pairs. Howev...
Metallic nanoparticles were shown to affect Förster energy transfer between fluorophore pairs. Howev...
We used DNA origami as a platform to coassemble a 20 nm gold nanoparticle (AuNP) and an organic fluo...
We used DNA origami as a platform to coassemble a 20 nm gold nanoparticle (AuNP) and an organic fluo...
Elaborating efficient strategies and deepening the understanding of light transport at the nanoscale...
Förster resonance energy transfer (FRET) is an important physical phenomenon which demands precise c...
Förster resonance energy transfer (FRET) is an important physical phenomenon which demands precise c...
We study the distance-dependent quenching of fluorescence due to a metallic nanoparticle in proximit...
Metallic nanoparticles were shown to affect Förster energy transfer between fluorophore pairs. Howe...
Conventional Förster resonance energy transfer (FRET) processes involving a pair of fluorophore and ...
Here we investigate the energy transfer rates of a Förster resonance energy transfer (FRET) pair pos...
Metallic nanoparticles were shown to affect Förster energy transfer between fluorophore pairs. Howev...
We used DNA origami as a platform to coassemble a 20 nm gold nanoparticle (AuNP) and an organic fluo...
Metallic nanoparticles were shown to affect Förster energy transfer between fluorophore pairs. Howev...
Metallic nanoparticles were shown to affect Förster energy transfer between fluorophore pairs. Howev...
Metallic nanoparticles were shown to affect Förster energy transfer between fluorophore pairs. Howev...
Metallic nanoparticles were shown to affect Förster energy transfer between fluorophore pairs. Howev...
We used DNA origami as a platform to coassemble a 20 nm gold nanoparticle (AuNP) and an organic fluo...
We used DNA origami as a platform to coassemble a 20 nm gold nanoparticle (AuNP) and an organic fluo...
Elaborating efficient strategies and deepening the understanding of light transport at the nanoscale...
Förster resonance energy transfer (FRET) is an important physical phenomenon which demands precise c...
Förster resonance energy transfer (FRET) is an important physical phenomenon which demands precise c...
We study the distance-dependent quenching of fluorescence due to a metallic nanoparticle in proximit...
Metallic nanoparticles were shown to affect Förster energy transfer between fluorophore pairs. Howe...
Conventional Förster resonance energy transfer (FRET) processes involving a pair of fluorophore and ...