Single-molecule detection has long relied on fluorescent labeling with high quantum-yield fluorophores. Plasmon-enhanced detection circumvents the need for labeling by allowing direct optical detection of weakly emitting and completely nonfluorescent species. This review focuses on recent advances in single molecule detection using plasmonic metal nanostructures as a sensing platform, particularly using a single particle-single molecule approach. In the past decade two mechanisms for plasmon-enhanced single-molecule detection have been demonstrated: (1) by plasmonically enhancing the emission of weakly fluorescent biomolecules, or (2) by monitoring shifts of the plasmon resonance induced by single-molecule interactions. We begin with a moti...
The plasmon resonance of a single metal nanoparticle induces an enhancement of the local electromagn...
The high sensitivity of localized surface plasmon resonance sensors to the local refractive index al...
Fluorescence-based single-molecule optical detection techniques are widely chosen over other methods...
Single-molecule detection has long relied on fluorescent labeling with high quantum-yield fluorophor...
Single-molecule detection has long relied on fluorescent labeling with high quantum-yield fluorophor...
I will outline recent advances in the plasmon-enhanced detection of single molecules and their appli...
Single-molecule detection has become a unique and indispensable tool for the study of molecular moti...
The rapid spread of epidemic diseases (i.e., coronavirus disease 2019 (COVID-19)) has contributed to...
In recent years, the sensitivity and specificity of optical sensors has improved tremendously due to...
The rapid spread of epidemic diseases (i.e., coronavirus disease 2019 (COVID-19)) has contributed to...
This is the author accepted manuscript. The final version is available from Wiley via the DOI in thi...
Their tunable optical properties and versatile surface functionalization have sparked applications o...
Along with remarkable progress of nanoplasmonics over the past 10years, single plasmonic nanoparticl...
For decades, optical studies of single molecules have relied on fluorescence detection. The availabi...
The plasmon resonance of a single metal nanoparticle induces an enhancement of the local electromagn...
The high sensitivity of localized surface plasmon resonance sensors to the local refractive index al...
Fluorescence-based single-molecule optical detection techniques are widely chosen over other methods...
Single-molecule detection has long relied on fluorescent labeling with high quantum-yield fluorophor...
Single-molecule detection has long relied on fluorescent labeling with high quantum-yield fluorophor...
I will outline recent advances in the plasmon-enhanced detection of single molecules and their appli...
Single-molecule detection has become a unique and indispensable tool for the study of molecular moti...
The rapid spread of epidemic diseases (i.e., coronavirus disease 2019 (COVID-19)) has contributed to...
In recent years, the sensitivity and specificity of optical sensors has improved tremendously due to...
The rapid spread of epidemic diseases (i.e., coronavirus disease 2019 (COVID-19)) has contributed to...
This is the author accepted manuscript. The final version is available from Wiley via the DOI in thi...
Their tunable optical properties and versatile surface functionalization have sparked applications o...
Along with remarkable progress of nanoplasmonics over the past 10years, single plasmonic nanoparticl...
For decades, optical studies of single molecules have relied on fluorescence detection. The availabi...
The plasmon resonance of a single metal nanoparticle induces an enhancement of the local electromagn...
The high sensitivity of localized surface plasmon resonance sensors to the local refractive index al...
Fluorescence-based single-molecule optical detection techniques are widely chosen over other methods...