We demonstrate the all-optical reconstruction of gold nanoparticle geometry using super-resolution microscopy. We employ DNA-PAINT to get exquisite control over the (un)binding kinetics by the number of complementary bases and salt concentration, leading to localization accuracies of ∼5 nm. We employ a dye with an emission spectrum strongly blue-shifted from the plasmon resonance to minimize mislocalization due to plasmon-fluorophore coupling. We correlate the all-optical reconstructions with atomic force microscopy images and find that reconstructed dimensions deviate by no more than ∼10%. Numerical modeling shows that this deviation is determined by the number of events per particle, and the signal-to-background ratio in our measurement. ...
Colloidal plasmonic materials are increasingly used in biosensing and catalysis, which has sparked t...
In this paper we demonstrate a new scheme for optical super-resolution, inspired, in-part, by PALM a...
Nanoparticles of many varieties are increasingly studied for use in the physical, chemical, and biol...
We demonstrate the all-optical reconstruction of gold nanoparticle geometry using super-resolution m...
We demonstrate the all-optical reconstruction of gold nanoparticle geometry using super-resolution m...
We demonstrate the all-optical reconstruction of gold nanoparticle geometry using super-resolution m...
We demonstrate the all-optical reconstruction of gold nanoparticle geometry using super-resolution m...
We present a new method for the imaging of single metallic nanoparticles that provides information a...
We present a new method for the imaging of single metallic nanoparticles that provides information a...
We present a new method for the imaging of single metallic nanoparticles that provides information a...
We present a new method for the imaging of single metallic nanoparticles that provides information a...
Correlative light-electron microscopy (CLEM) requires the availability of robust probes which are vi...
Correlative light-electron microscopy (CLEM) requires the availability of robust probes which are vi...
Colloidal plasmonic materials are increasingly used in biosensing and catalysis, which has sparked t...
textImaging of biomolecules on the nano-scale is a crucial developing technology with major implicat...
Colloidal plasmonic materials are increasingly used in biosensing and catalysis, which has sparked t...
In this paper we demonstrate a new scheme for optical super-resolution, inspired, in-part, by PALM a...
Nanoparticles of many varieties are increasingly studied for use in the physical, chemical, and biol...
We demonstrate the all-optical reconstruction of gold nanoparticle geometry using super-resolution m...
We demonstrate the all-optical reconstruction of gold nanoparticle geometry using super-resolution m...
We demonstrate the all-optical reconstruction of gold nanoparticle geometry using super-resolution m...
We demonstrate the all-optical reconstruction of gold nanoparticle geometry using super-resolution m...
We present a new method for the imaging of single metallic nanoparticles that provides information a...
We present a new method for the imaging of single metallic nanoparticles that provides information a...
We present a new method for the imaging of single metallic nanoparticles that provides information a...
We present a new method for the imaging of single metallic nanoparticles that provides information a...
Correlative light-electron microscopy (CLEM) requires the availability of robust probes which are vi...
Correlative light-electron microscopy (CLEM) requires the availability of robust probes which are vi...
Colloidal plasmonic materials are increasingly used in biosensing and catalysis, which has sparked t...
textImaging of biomolecules on the nano-scale is a crucial developing technology with major implicat...
Colloidal plasmonic materials are increasingly used in biosensing and catalysis, which has sparked t...
In this paper we demonstrate a new scheme for optical super-resolution, inspired, in-part, by PALM a...
Nanoparticles of many varieties are increasingly studied for use in the physical, chemical, and biol...