FRET is based on the dipole-dipole coupling mechanism, where the energy transfer occurs through non-radiative means. It is highly efficient over short distances and sensitive to the separation between ...
Fluorescence resonance energy transfer (FRET) with quantum dots (QDs) exploits the non-radiative transfer of excitation energy from a fluorescent donor nanoparticle to a proximal acceptor molecule or ...
Organic luminescent materials have achieved a significant increase in interest for their lighting, display, anti-counterfeiting and bioimaging applications, and the luminescent process is heavily ...
Using a novel non-contact approach, a research team has successfully controlled the speed and efficiency of Forster resonance energy transfer between fluorescent molecules by varying the intensity of ...
Researchers at TU/e have demonstrated that energy transfer without loss via light or heat can occur over much greater distances than previously thought possible thanks to vibrations in microscopic ...
A novel technique with potential applications for fields such as droplet chemistry and photochemistry has been demonstrated by an Osaka Metropolitan University-led research group. Professor Yasuyuki ...