With the aim of developing a DNA sequencing methodology, we theoretically examine the feasibility of using nanoplasmonics to control the translocation of a DNA molecule through a solid-state nanopore and to read off sequence information using surface-enhanced Raman spectroscopy. Using molecular dynamics simulations, we show that high-intensity optical hot spots produced by a metallic nanostructure can arrest DNA translocation through a solid-state nanopore, thus providing a physical knob for controlling the DNA speed. Switching the plasmonic field on and off can displace the DNA molecule in discrete steps, sequentially exposing neighboring fragments of a DNA molecule to the pore as well as to the plasmonic hot spot. Surface-enhanced Raman s...
peer reviewedEngineered electromagnetic fields in plasmonic nanopores enable enhanced optical detect...
Plasmonics is the discipline that investigates the use of collective oscillations of conductive elec...
DNA and amino acids are important biomolecules in living organisms. Probing such biomolecules with s...
With the aim of developing a DNA sequencing methodology, we theoretically examine the feasibility of...
With the aim of developing a DNA sequencing methodology, we theoretically examine the feasibility of...
With the aim of developing a DNA sequencing methodology, we theoretically examine the feasibility of...
With the aim of developing a DNA sequencing methodology, we theoretically examine the feasibility of...
ABSTRACT: Nanopores enable label-free detection and analysis of single biomolecules. Here, we invest...
Engineered electromagnetic fields in plasmonic nanopores enable enhanced optical detection for singl...
Nanopores enable label-free detection and analysis of single biomolecules. Here, we investigate DNA ...
Engineered electromagnetic fields in plasmonic nanopores enable enhanced optical detection for singl...
Engineered electromagnetic fields in plasmonic nanopores enable enhanced optical detection for singl...
Engineered electromagnetic fields in plasmonic nanopores enable enhanced optical detection for singl...
Engineered electromagnetic fields in plasmonic nanopores enable enhanced optical detection for singl...
Engineered electromagnetic fields in plasmonic nanopores enable enhanced optical detection for singl...
peer reviewedEngineered electromagnetic fields in plasmonic nanopores enable enhanced optical detect...
Plasmonics is the discipline that investigates the use of collective oscillations of conductive elec...
DNA and amino acids are important biomolecules in living organisms. Probing such biomolecules with s...
With the aim of developing a DNA sequencing methodology, we theoretically examine the feasibility of...
With the aim of developing a DNA sequencing methodology, we theoretically examine the feasibility of...
With the aim of developing a DNA sequencing methodology, we theoretically examine the feasibility of...
With the aim of developing a DNA sequencing methodology, we theoretically examine the feasibility of...
ABSTRACT: Nanopores enable label-free detection and analysis of single biomolecules. Here, we invest...
Engineered electromagnetic fields in plasmonic nanopores enable enhanced optical detection for singl...
Nanopores enable label-free detection and analysis of single biomolecules. Here, we investigate DNA ...
Engineered electromagnetic fields in plasmonic nanopores enable enhanced optical detection for singl...
Engineered electromagnetic fields in plasmonic nanopores enable enhanced optical detection for singl...
Engineered electromagnetic fields in plasmonic nanopores enable enhanced optical detection for singl...
Engineered electromagnetic fields in plasmonic nanopores enable enhanced optical detection for singl...
Engineered electromagnetic fields in plasmonic nanopores enable enhanced optical detection for singl...
peer reviewedEngineered electromagnetic fields in plasmonic nanopores enable enhanced optical detect...
Plasmonics is the discipline that investigates the use of collective oscillations of conductive elec...
DNA and amino acids are important biomolecules in living organisms. Probing such biomolecules with s...