Single-molecule imaging pushes fluorescence microscopy beyond the diffraction limit of traditional microscopy. Such super-resolution imaging, which relies on the detection of bright, stable fluorescent probes to achieve nanometer-scale resolution, is often hindered in biological systems by dim, blinking fluorescent proteins (FPs). Here, we use gold nanorods and single-molecule fluorescence detection to achieve plasmon-enhanced emission from intrinsically fluorescent proteins. We measure a doubled photon emission rate from the red FP mCherry and detect three times more photons before photobleaching from the photoactivatable FP PAmCherry. We further explore the effect of near-field nanorod interactions on the yellow FP mCitrine, for which the...
Plasmonic nanoparticles influence the absorption and emission processes of nearby emitters due to lo...
Plasmonic fluorescence enhancement is used to study fluorescence correlation spectroscopy (FCS) at h...
Metallic nanoparticles (NPs) are able to modify the excitation and emission rates (plasmonic enhance...
Coupling to metal nanoparticles can increase the fluorescence intensity and photostability of fluore...
Single-molecule fluorescence (SMF) microscopy is a powerful technique that provides high sensitivity...
The sensitivity and resolution of single-molecule fluorescence imaging in biology are mainly limited...
This thesis aims to improve the detection from ultra-weak single emitter by enhancing their emission...
One of the most rapidly growing areas of physics and nanotechnology is concerned with plasmonic effe...
Previously we have demonstrated surface plasmon enhanced energy transfer between fluorophors and gol...
Super-resolution imaging has provided new insights into nanoscale optics. Plasmonic gold nanotriangl...
Fluorescent gold nanoparticle (GNP) is an easily synthesized and biocompatible optical platform for ...
Enhancing the fluorescence of a weak emitter is important to further extend the reach of single-mole...
Fluorescent dyes used for single-molecule spectroscopy can undergo millions of excitation-emission c...
Enhancing the fluorescence of a weak emitter is important to further extend the reach of single-mole...
Metal-enhanced fluorescence has attracted much attention due to its scientific importance and lots o...
Plasmonic nanoparticles influence the absorption and emission processes of nearby emitters due to lo...
Plasmonic fluorescence enhancement is used to study fluorescence correlation spectroscopy (FCS) at h...
Metallic nanoparticles (NPs) are able to modify the excitation and emission rates (plasmonic enhance...
Coupling to metal nanoparticles can increase the fluorescence intensity and photostability of fluore...
Single-molecule fluorescence (SMF) microscopy is a powerful technique that provides high sensitivity...
The sensitivity and resolution of single-molecule fluorescence imaging in biology are mainly limited...
This thesis aims to improve the detection from ultra-weak single emitter by enhancing their emission...
One of the most rapidly growing areas of physics and nanotechnology is concerned with plasmonic effe...
Previously we have demonstrated surface plasmon enhanced energy transfer between fluorophors and gol...
Super-resolution imaging has provided new insights into nanoscale optics. Plasmonic gold nanotriangl...
Fluorescent gold nanoparticle (GNP) is an easily synthesized and biocompatible optical platform for ...
Enhancing the fluorescence of a weak emitter is important to further extend the reach of single-mole...
Fluorescent dyes used for single-molecule spectroscopy can undergo millions of excitation-emission c...
Enhancing the fluorescence of a weak emitter is important to further extend the reach of single-mole...
Metal-enhanced fluorescence has attracted much attention due to its scientific importance and lots o...
Plasmonic nanoparticles influence the absorption and emission processes of nearby emitters due to lo...
Plasmonic fluorescence enhancement is used to study fluorescence correlation spectroscopy (FCS) at h...
Metallic nanoparticles (NPs) are able to modify the excitation and emission rates (plasmonic enhance...