peer reviewedEngineered electromagnetic fields in plasmonic nanopores enable enhanced optical detection for single molecule sensing and sequencing. Here, a plasmonic nanopore prepared in a thick nanoporous film is used to investigate, by means of surface enhanced Raman spectroscopy, the interaction between the metallic surface of the pore and a long-chain double strand DNA molecule free to diffuse through the pore. We discuss how the matrix of the porous material can interact with the molecule thanks to: i) transient aspecific interactions between the porous surface and DNA; ii) diffusion; iii) thermal and optical forces exerted by the localized field in a metallic nanostructure on the DNA molecule. An interaction time up to tens of millise...
Solid-state nanopores promise a scalable platform for single-molecule DNA analysis. Direct, real-tim...
Raman spectroscopy is a widely used vibrational spectroscopic technique to identify and study chemic...
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...
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...
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...
With the aim of developing a DNA sequencing methodology, we theoretically examine the feasibility of...
Solid-state nanopores promise a scalable platform for single-molecule DNA analysis. Direct, real-tim...
Raman spectroscopy is a widely used vibrational spectroscopic technique to identify and study chemic...
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...
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...
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...
With the aim of developing a DNA sequencing methodology, we theoretically examine the feasibility of...
Solid-state nanopores promise a scalable platform for single-molecule DNA analysis. Direct, real-tim...
Raman spectroscopy is a widely used vibrational spectroscopic technique to identify and study chemic...
ABSTRACT: Nanopores enable label-free detection and analysis of single biomolecules. Here, we invest...