The near infrared (NIR) fluorescence enhancement by local surface plasmon resonanoce from arrayed gold (Au) nanoblocks was investigated by NIR fluorescent dyes, IR780, immobilized in hydrophobic DNA thin film on glass sub-strates, to clarify the gap mode effect on the fluorescence enhancement. In the substrate with Dimer type Au nanoblock arrangement, average total fluorescence intensity was larger by 10.0, 2.4, and 12.4 times for non-polarized, P- and S-polarization as compared with that on a glass substrate alone, respectively. These findings suggested that enhancement of excitation light intensity at nanogap in the Dimer type Au nanoblock arrangement affected the fluorescence intensity. Average total fluorescence intensity, on the other ...
Metal-enhanced fluorescence has attracted much attention due to its scientific importance and lots o...
Potential utilization of proteins for early detection and diagnosis of various diseases has drawn co...
Optical nanoantennas are very efficient for manipulating and controlling light. These nanoantennas s...
In metal-enhanced fluorescence (MEF), the localized surface plasmon resonances of metallic nanostruc...
Enhancing the fluorescence of a weak emitter is important to further extend the reach of single-mole...
Enhancing the fluorescence of a weak emitter is important to further extend the reach of single-mole...
Metal-enhanced fluorescence (MEF), resulting from the near-field interaction of fluorophores with me...
Metal enhanced fluorescence (MEF) is a physical effect through which the near-field interaction of f...
Enhanced local electric fields are created by nanoparticles when pumped at wavelengths corresponding...
The emission intensity of fluorophore molecule may change in presence of strong plasmon field induce...
Gold nanostars (AuNSs) are receiving increasing attention for their potential applications in bionan...
Localized surface plasmon resonances excited in metallic nanoparticles confine and enhance electroma...
Gold nanostars (AuNSs) are promising agents for the development of high-performance diagnostic devic...
International audienceFluorescence enhancement effects have many potential applications in the domai...
Fluorescence enhancement effects have many potential applications in the domain of biochemical sens...
Metal-enhanced fluorescence has attracted much attention due to its scientific importance and lots o...
Potential utilization of proteins for early detection and diagnosis of various diseases has drawn co...
Optical nanoantennas are very efficient for manipulating and controlling light. These nanoantennas s...
In metal-enhanced fluorescence (MEF), the localized surface plasmon resonances of metallic nanostruc...
Enhancing the fluorescence of a weak emitter is important to further extend the reach of single-mole...
Enhancing the fluorescence of a weak emitter is important to further extend the reach of single-mole...
Metal-enhanced fluorescence (MEF), resulting from the near-field interaction of fluorophores with me...
Metal enhanced fluorescence (MEF) is a physical effect through which the near-field interaction of f...
Enhanced local electric fields are created by nanoparticles when pumped at wavelengths corresponding...
The emission intensity of fluorophore molecule may change in presence of strong plasmon field induce...
Gold nanostars (AuNSs) are receiving increasing attention for their potential applications in bionan...
Localized surface plasmon resonances excited in metallic nanoparticles confine and enhance electroma...
Gold nanostars (AuNSs) are promising agents for the development of high-performance diagnostic devic...
International audienceFluorescence enhancement effects have many potential applications in the domai...
Fluorescence enhancement effects have many potential applications in the domain of biochemical sens...
Metal-enhanced fluorescence has attracted much attention due to its scientific importance and lots o...
Potential utilization of proteins for early detection and diagnosis of various diseases has drawn co...
Optical nanoantennas are very efficient for manipulating and controlling light. These nanoantennas s...