Advanced single molecular analysis is a key stepping stone for the rapid sensing and characterization of biomolecules. This will only be made possible through the implementation of versatile platforms, with high sensitivities and the precise control of experimental conditions. The presented work details an advancement of this technology, through the development of a low-noise Pyrex/silicon nitride/gold nanopore platform. The nanopore is surrounded by a plasmonic bullseye structure and provides targeted and controllable heating via laser irradiation, which is directed toward the center of the pore. The device architecture is investigated using multiwavelength laser heating experiments and 'individual DNA molecules are detected under controll...
peer reviewedSolid-state nanopore-based sensors are promising platforms for next-generation sequenci...
Plasmonics is the discipline that investigates the use of collective oscillations of conductive elec...
In this letter, we proposed and numerically demonstrated a novel plasmonic nanopore platform for sin...
Advanced single molecular analysis is a key stepping stone for the rapid sensing and characterizatio...
Nanopore biosensors are a relatively new tool for single-molecule detection, whose inception was ins...
Solid-state nanopore-based sensors are promising platforms for next-generation sequencing technologi...
In the past two decades there has been a tremendous amount of research into the use of nanopores as ...
In the past two decades there has been a tremendous amount of research into the use of nanopores as ...
Plasmon resonance biosensors provide ultimate sensitivity at the single-molecule level. This sensiti...
ABSTRACT: Nanopores enable label-free detection and analysis of single biomolecules. Here, we invest...
In an emerging field of nanopore-based biosensors, DNA and other biomolecules are detected at the si...
Grabbing a single molecule and inspecting its contents is far from easy. Apart from the small size o...
A review of sensing applications based on plasmonic nanopores is given. Many new types of plasmonic ...
Plasmon resonance biosensors provide ultimate sensitivity at the single-molecule level. This sensiti...
One of the most significant challenges facing physical and biological scientists is the accurate det...
peer reviewedSolid-state nanopore-based sensors are promising platforms for next-generation sequenci...
Plasmonics is the discipline that investigates the use of collective oscillations of conductive elec...
In this letter, we proposed and numerically demonstrated a novel plasmonic nanopore platform for sin...
Advanced single molecular analysis is a key stepping stone for the rapid sensing and characterizatio...
Nanopore biosensors are a relatively new tool for single-molecule detection, whose inception was ins...
Solid-state nanopore-based sensors are promising platforms for next-generation sequencing technologi...
In the past two decades there has been a tremendous amount of research into the use of nanopores as ...
In the past two decades there has been a tremendous amount of research into the use of nanopores as ...
Plasmon resonance biosensors provide ultimate sensitivity at the single-molecule level. This sensiti...
ABSTRACT: Nanopores enable label-free detection and analysis of single biomolecules. Here, we invest...
In an emerging field of nanopore-based biosensors, DNA and other biomolecules are detected at the si...
Grabbing a single molecule and inspecting its contents is far from easy. Apart from the small size o...
A review of sensing applications based on plasmonic nanopores is given. Many new types of plasmonic ...
Plasmon resonance biosensors provide ultimate sensitivity at the single-molecule level. This sensiti...
One of the most significant challenges facing physical and biological scientists is the accurate det...
peer reviewedSolid-state nanopore-based sensors are promising platforms for next-generation sequenci...
Plasmonics is the discipline that investigates the use of collective oscillations of conductive elec...
In this letter, we proposed and numerically demonstrated a novel plasmonic nanopore platform for sin...