We report unprecedented ultra high frequency capacitance spectroscopy measurements up to 500 MHz on a nanoelectrode array for biosensing applications, which extends considerably the previous 70 MHz limit. To achieve this goal, a high-frequency adapter board and measurement system are designed to drive the sensing nanoelectrodes of an existing biochip with appropriate clocks generated by an advanced high-speed pulser. Experimental results in dry and in electrolyte conditions are reported. The extended frequency range enables to overcome the Debye screening cut-off frequency of electrolytes at physiological salt concentrations, thus disclosing new perspectives for single molecule detection
ABSTRACT: Nanosensors based on the unique electronic properties of nanotubes and nanowires offer hig...
To enable impedimetric sensing of whole-cell bacteria in saline buffer with passivated microelectrod...
International audienceThis paper deals with the development and characterization of label-free micro...
We report unprecedented ultra high frequency capacitance spectroscopy measurements up to 500 MHz on ...
Electrochemical biosensors are attractive due to their ease of integration,\ud miniaturization and c...
We have developed a measurement platform for performing high-frequency AC detection at nanoelectrode...
We describe the realization of a fully-electronic label-free temperature-controlled biosensing platf...
One major drawback of impedimetric biosensors is their inability to work efficiently in high-salt so...
High frequency impedance spectroscopy (HFIS) biosensors based on nano-electrode arrays (NEA) demons...
We develop theoretical models and numerical simulators to accurately describe the AC signal response...
Massively parallel, label free biosensing platforms can in principle be realized by combining all-el...
Introduction We have developed a high-frequency electronic biosensor of parallel-plate geometry that...
A significant impediment to the use of impedance spectroscopy in bio-sensing is the electrode polari...
Nanosensors based on the unique electronic properties of nanotubes and nanowires offer high sensitiv...
ABSTRACT: Nanosensors based on the unique electronic properties of nanotubes and nanowires offer hig...
To enable impedimetric sensing of whole-cell bacteria in saline buffer with passivated microelectrod...
International audienceThis paper deals with the development and characterization of label-free micro...
We report unprecedented ultra high frequency capacitance spectroscopy measurements up to 500 MHz on ...
Electrochemical biosensors are attractive due to their ease of integration,\ud miniaturization and c...
We have developed a measurement platform for performing high-frequency AC detection at nanoelectrode...
We describe the realization of a fully-electronic label-free temperature-controlled biosensing platf...
One major drawback of impedimetric biosensors is their inability to work efficiently in high-salt so...
High frequency impedance spectroscopy (HFIS) biosensors based on nano-electrode arrays (NEA) demons...
We develop theoretical models and numerical simulators to accurately describe the AC signal response...
Massively parallel, label free biosensing platforms can in principle be realized by combining all-el...
Introduction We have developed a high-frequency electronic biosensor of parallel-plate geometry that...
A significant impediment to the use of impedance spectroscopy in bio-sensing is the electrode polari...
Nanosensors based on the unique electronic properties of nanotubes and nanowires offer high sensitiv...
ABSTRACT: Nanosensors based on the unique electronic properties of nanotubes and nanowires offer hig...
To enable impedimetric sensing of whole-cell bacteria in saline buffer with passivated microelectrod...
International audienceThis paper deals with the development and characterization of label-free micro...