Fast and reversible modulation of ion flow through nanosized apertures is important for many nanofluidic applications, including sensing and separation systems. Here, we present the first demonstration of a reversible plasmon-controlled nanofluidic valve. We show that plasmonic nanopores (solid-state nanopores integrated with metal nanocavities) can be used as a fluidic switch upon optical excitation. We systematically investigate the effects of laser illumination of single plasmonic nanopores and experimentally demonstrate photoresistance switching where fluidic transport and ion flow are switched on or off. This is manifested as a large (∼1−2 orders of magnitude) increase in the ionic nanopore resistance and an accompanying current rectif...
Solid-state nanopore-based sensors are promising platforms for next-generation sequencing technologi...
Nanopores are apertures of nanometric dimensions in an insulating matrix. They are routinely used to...
This chapter discusses a hydrodynamics-inspired approach to trap and manipulate light in plasmonic n...
ABSTRACT: Fast and reversible modulation of ion flow through nanosized apertures is important for ma...
Plasmonics provides an unparalleled method for manipulating light beyond the diffraction limit, maki...
Biological ion channels and ion pumps with sub-nanometer sizes modulate ion transport in response to...
We have developed a nanoplasmonic-based approach to induce nanometer-sized local defects in the phos...
We have developed a nanoplasmonic-based approach to induce nanometer-sized local defects in the phos...
Inspired by natural photosynthesis, light has become an emerging ionic behavior regulator and ion-pu...
We present a novel cost-efficient method for the fabrication of high-quality self-aligned plasmonic ...
We present a novel method for sensitive mapping of optical intensity distributions at subdiffraction...
Water wetting behavior in nanoconfined environments plays an important role in mass transport and si...
ABSTRACT: Nanopores enable label-free detection and analysis of single biomolecules. Here, we invest...
We present a novel cost-efficient method for the fabrication of high-quality self-aligned plasmonic ...
A review of sensing applications based on plasmonic nanopores is given. Many new types of plasmonic ...
Solid-state nanopore-based sensors are promising platforms for next-generation sequencing technologi...
Nanopores are apertures of nanometric dimensions in an insulating matrix. They are routinely used to...
This chapter discusses a hydrodynamics-inspired approach to trap and manipulate light in plasmonic n...
ABSTRACT: Fast and reversible modulation of ion flow through nanosized apertures is important for ma...
Plasmonics provides an unparalleled method for manipulating light beyond the diffraction limit, maki...
Biological ion channels and ion pumps with sub-nanometer sizes modulate ion transport in response to...
We have developed a nanoplasmonic-based approach to induce nanometer-sized local defects in the phos...
We have developed a nanoplasmonic-based approach to induce nanometer-sized local defects in the phos...
Inspired by natural photosynthesis, light has become an emerging ionic behavior regulator and ion-pu...
We present a novel cost-efficient method for the fabrication of high-quality self-aligned plasmonic ...
We present a novel method for sensitive mapping of optical intensity distributions at subdiffraction...
Water wetting behavior in nanoconfined environments plays an important role in mass transport and si...
ABSTRACT: Nanopores enable label-free detection and analysis of single biomolecules. Here, we invest...
We present a novel cost-efficient method for the fabrication of high-quality self-aligned plasmonic ...
A review of sensing applications based on plasmonic nanopores is given. Many new types of plasmonic ...
Solid-state nanopore-based sensors are promising platforms for next-generation sequencing technologi...
Nanopores are apertures of nanometric dimensions in an insulating matrix. They are routinely used to...
This chapter discusses a hydrodynamics-inspired approach to trap and manipulate light in plasmonic n...