Single-particle plasmon spectroscopy has become a standard technique to detect and quantify the presence of unlabeled macromolecules. Here, we extend this method to determine their exact distance from the plasmon sensors with sub-nanometer resolution by systematically varying the sensing range into the surrounding by adjusting the size of the plasmonic nanoparticles. We improved current single-particle plasmon spectroscopy to record continuously for hours the scattering spectra of thousands of nanoparticles of different sizes simultaneously with 1.8 s time resolution. We apply this technique to study the interaction dynamics of bacterial Min proteins with supported lipid membranes of different composition. Our experiments reveal a surprisin...
Nanoplasmonic sensors have emerged as a promising measurement approach to track biomacromolecular in...
A novel nanosized and addressable sensing platform based on membrane coated plasmonic particles for ...
In this article, we demonstrate how to perform microscale spectroscopy of plasmonic nanostructures i...
Single-particle plasmon spectroscopy has become a standard technique to detect and quantify the pres...
6 p.-4 fig.Single-particle plasmon spectroscopy has become a standard technique todetect and quantif...
Nanoparticles exhibit various optical properties arising from scattering and absorption due to polar...
Nanoparticles exhibit various optical properties arising from scattering and absorption due to polar...
We use individual gold nanorods as pointlike detectors for the intrinsic dynamics of an oscillating ...
We use individual gold nanorods as pointlike detectors for the intrinsic dynamics of an oscillating ...
We use individual gold nanorods as pointlike detectors for the intrinsic dynamics of an oscillating ...
Thesis (Ph.D.)--Boston UniversityPLEASE NOTE: Boston University Libraries did not receive an Authori...
Nanoscale structures play a fundamental role in diverse scientific areas, including biology and info...
In this article, we demonstrate how to perform microscale spectroscopy of plasmonic nanostructures i...
Molecular rulers based on Foerster Resonance Energy Transfer (FRET) that report conformational chang...
A novel nanosized and addressable sensing platform based on membrane coated plasmonic particles for ...
Nanoplasmonic sensors have emerged as a promising measurement approach to track biomacromolecular in...
A novel nanosized and addressable sensing platform based on membrane coated plasmonic particles for ...
In this article, we demonstrate how to perform microscale spectroscopy of plasmonic nanostructures i...
Single-particle plasmon spectroscopy has become a standard technique to detect and quantify the pres...
6 p.-4 fig.Single-particle plasmon spectroscopy has become a standard technique todetect and quantif...
Nanoparticles exhibit various optical properties arising from scattering and absorption due to polar...
Nanoparticles exhibit various optical properties arising from scattering and absorption due to polar...
We use individual gold nanorods as pointlike detectors for the intrinsic dynamics of an oscillating ...
We use individual gold nanorods as pointlike detectors for the intrinsic dynamics of an oscillating ...
We use individual gold nanorods as pointlike detectors for the intrinsic dynamics of an oscillating ...
Thesis (Ph.D.)--Boston UniversityPLEASE NOTE: Boston University Libraries did not receive an Authori...
Nanoscale structures play a fundamental role in diverse scientific areas, including biology and info...
In this article, we demonstrate how to perform microscale spectroscopy of plasmonic nanostructures i...
Molecular rulers based on Foerster Resonance Energy Transfer (FRET) that report conformational chang...
A novel nanosized and addressable sensing platform based on membrane coated plasmonic particles for ...
Nanoplasmonic sensors have emerged as a promising measurement approach to track biomacromolecular in...
A novel nanosized and addressable sensing platform based on membrane coated plasmonic particles for ...
In this article, we demonstrate how to perform microscale spectroscopy of plasmonic nanostructures i...