The interest in analytical devices, which typically rely on the reactivity of a biological component for specificity, is growing rapidly. In this Perspective, we highlight current challenges in all-electrical biosensing as these systems shrink toward the nanoscale and enable the detection of analytes at the single-molecule level. We focus on two sensing principles: nanopores and amperometric microelectrode devices
The integration of constriction structures such as nanopores and nanochannels into fluidic devices d...
anopores are electrophoretic single-molecule sensors composed of an ultrathin insulating membrane (t...
International audienceOur society is increasingly exposed to harmful nano and nanobio particles as n...
The interest in analytical devices, which typically rely on the reactivity of a biological component...
The interest in analytical devices, which typically rely on the reactivity of a biological component...
The interest in analytical devices, which typically rely on the reactivity of a biological component...
The interest in analytical devices, which typically rely on the reactivity of a biological component...
The interest in analytical devices, which typically rely on the reactivity of a biological component...
The interest in analytical devices, which typically rely on the reactivity of a biological component...
Nanopore sensors are a new class of single-molecule biosensors that allow for the detection of DNA, ...
Nanopore sensors are a new class of single-molecule biosensors that allow for the detection of DNA, ...
Nanopore sensors are a new class of single-molecule biosensors that allow for the detection of DNA, ...
Nanopore sensors are a new class of single-molecule biosensors that allow for the detection of DNA, ...
We present data concerning the electrical properties of a class of biosensor devices based on bio-fu...
Nanopores are nanofluidic channels formed through thin membranes that can deliver standout single-mo...
The integration of constriction structures such as nanopores and nanochannels into fluidic devices d...
anopores are electrophoretic single-molecule sensors composed of an ultrathin insulating membrane (t...
International audienceOur society is increasingly exposed to harmful nano and nanobio particles as n...
The interest in analytical devices, which typically rely on the reactivity of a biological component...
The interest in analytical devices, which typically rely on the reactivity of a biological component...
The interest in analytical devices, which typically rely on the reactivity of a biological component...
The interest in analytical devices, which typically rely on the reactivity of a biological component...
The interest in analytical devices, which typically rely on the reactivity of a biological component...
The interest in analytical devices, which typically rely on the reactivity of a biological component...
Nanopore sensors are a new class of single-molecule biosensors that allow for the detection of DNA, ...
Nanopore sensors are a new class of single-molecule biosensors that allow for the detection of DNA, ...
Nanopore sensors are a new class of single-molecule biosensors that allow for the detection of DNA, ...
Nanopore sensors are a new class of single-molecule biosensors that allow for the detection of DNA, ...
We present data concerning the electrical properties of a class of biosensor devices based on bio-fu...
Nanopores are nanofluidic channels formed through thin membranes that can deliver standout single-mo...
The integration of constriction structures such as nanopores and nanochannels into fluidic devices d...
anopores are electrophoretic single-molecule sensors composed of an ultrathin insulating membrane (t...
International audienceOur society is increasingly exposed to harmful nano and nanobio particles as n...