A high local dye concentration in doped silica-based core–shell nanoparticles causes self-quenching and spectral broadening (top images). This phenomenon jeopardizes the potential advantages of heavily doped systems. Förster resonance energy transfer (FRET) to an acceptor co-included in the silica led to ultrabright nanoparticles (bottom images) with a preselected narrow-band emission and a pseudo-Stokes shift of 129 nm
Electronic energy transfer is a crucial photophysical process, since it is at the basis of essential...
Electronic energy transfer is a crucial photophysical process, since it is at the basis of essential...
We present a one-pot synthesis of core-shell silica nanoparticles (SiNPs) as a novel fluorescent pro...
A high local dye concentration in doped silica-based core\u2013shell nanoparticles causes self-quenc...
A high local dye concentration in doped silica-based core–shell nanoparticles causes self-quenching ...
A high local dye concentration in doped silica-based core–shell nanoparticles causes self-quenching ...
none7noA high local dye concentration in doped silica-based core–shell nanoparticles causes self-que...
Forster resonance energy transfer (FRET) has been studied between fluorescein (donor, D) and rhodami...
The role of relative concentrations of energy donors (fluorescein, D), acceptors (rhodamine, A) and ...
Fast and efficient energy transfer among dyes confined in nanocontainers provides the basis of outst...
Fast and efficient energy transfer among dyes confined in nanocontainers provides the basis of outst...
Fast and efficient energy transfer among dyes confined in nanocontainers provides the basis of outst...
Fast and efficient energy transfer among dyes confined in nanocontainers provides the basis of outst...
none8Electronic energy transfer is a crucial photophysical process, since it is at the basis of esse...
The process of formation of silica nanoparticles doped with a newly synthesized pyrene derivative ha...
Electronic energy transfer is a crucial photophysical process, since it is at the basis of essential...
Electronic energy transfer is a crucial photophysical process, since it is at the basis of essential...
We present a one-pot synthesis of core-shell silica nanoparticles (SiNPs) as a novel fluorescent pro...
A high local dye concentration in doped silica-based core\u2013shell nanoparticles causes self-quenc...
A high local dye concentration in doped silica-based core–shell nanoparticles causes self-quenching ...
A high local dye concentration in doped silica-based core–shell nanoparticles causes self-quenching ...
none7noA high local dye concentration in doped silica-based core–shell nanoparticles causes self-que...
Forster resonance energy transfer (FRET) has been studied between fluorescein (donor, D) and rhodami...
The role of relative concentrations of energy donors (fluorescein, D), acceptors (rhodamine, A) and ...
Fast and efficient energy transfer among dyes confined in nanocontainers provides the basis of outst...
Fast and efficient energy transfer among dyes confined in nanocontainers provides the basis of outst...
Fast and efficient energy transfer among dyes confined in nanocontainers provides the basis of outst...
Fast and efficient energy transfer among dyes confined in nanocontainers provides the basis of outst...
none8Electronic energy transfer is a crucial photophysical process, since it is at the basis of esse...
The process of formation of silica nanoparticles doped with a newly synthesized pyrene derivative ha...
Electronic energy transfer is a crucial photophysical process, since it is at the basis of essential...
Electronic energy transfer is a crucial photophysical process, since it is at the basis of essential...
We present a one-pot synthesis of core-shell silica nanoparticles (SiNPs) as a novel fluorescent pro...