Plasmonic fluorescence enhancement is used to study fluorescence correlation spectroscopy (FCS) at higher concentrations than in regular diffraction-limited FCS experiments. Previous studies suffered from sticking to the substrate and were performed mainly with poorly emitting dyes. A lipid bilayer forms a passivating surface, preventing sticking of the dye or the protein, and allows for specific anchoring of probe molecules. For dyes with high quantum yields, the fluorescence background of unenhanced molecules is high, and the fluorescence enhancement is weak, less than about 10. Nonetheless, we show that FCS is possible at micromolar concentrations of the probe molecule. Enhanced FCS is recorded by selecting signals on the basis of their ...
Dynamic behavior of fluorescent molecules near an individual gold nanoparticle is investigated exper...
Single molecules: Large enhancements of single-molecule fluorescence up to 1100 times by using synth...
Fluorescence-based single-molecule optical detection techniques are widely chosen over other methods...
Plasmonic fluorescence enhancement is used to study fluorescence correlation spectroscopy (FCS) at h...
Fluorescence correlation spectroscopy (FCS) is a standard tool for studying diffusion of molecules i...
Coupling to metal nanoparticles can increase the fluorescence intensity and photostability of fluore...
Fluorescence correlation spectroscopy (FCS) is used to study the movements and the interactions of b...
Single-molecule imaging pushes fluorescence microscopy beyond the diffraction limit of traditional m...
We propose two-focus fluorescence correlation spectroscopy (2fFCS) on basis of plasmonic nanoantenna...
The surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the excitation...
Fluorescence correlation spectroscopy (FCS) is a versatile technique to study membrane dynamics and ...
A nanoscale layer of chromium or titanium is commonly used in plasmonic nanoantennas to firmly adher...
The surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the excitation...
In fluorescence correlation spectroscopy (FCS), one measures and correlates the fluctuations that oc...
Cell membranes organize and regulate a vital share of biological signaling. Fluorescence has become...
Dynamic behavior of fluorescent molecules near an individual gold nanoparticle is investigated exper...
Single molecules: Large enhancements of single-molecule fluorescence up to 1100 times by using synth...
Fluorescence-based single-molecule optical detection techniques are widely chosen over other methods...
Plasmonic fluorescence enhancement is used to study fluorescence correlation spectroscopy (FCS) at h...
Fluorescence correlation spectroscopy (FCS) is a standard tool for studying diffusion of molecules i...
Coupling to metal nanoparticles can increase the fluorescence intensity and photostability of fluore...
Fluorescence correlation spectroscopy (FCS) is used to study the movements and the interactions of b...
Single-molecule imaging pushes fluorescence microscopy beyond the diffraction limit of traditional m...
We propose two-focus fluorescence correlation spectroscopy (2fFCS) on basis of plasmonic nanoantenna...
The surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the excitation...
Fluorescence correlation spectroscopy (FCS) is a versatile technique to study membrane dynamics and ...
A nanoscale layer of chromium or titanium is commonly used in plasmonic nanoantennas to firmly adher...
The surface plasmon modes of metal nanoparticles provide a way to efficiently enhance the excitation...
In fluorescence correlation spectroscopy (FCS), one measures and correlates the fluctuations that oc...
Cell membranes organize and regulate a vital share of biological signaling. Fluorescence has become...
Dynamic behavior of fluorescent molecules near an individual gold nanoparticle is investigated exper...
Single molecules: Large enhancements of single-molecule fluorescence up to 1100 times by using synth...
Fluorescence-based single-molecule optical detection techniques are widely chosen over other methods...