The rapid and selective detection of whole bacterial cells is of interest for the development of Point-of-Care (PoC) diagnosis tools and Lab-on-Chip (LoC) systems. Different types of transducers are promising to that end, including in particular capacitive biosensors. For them, we present here a three-step approach to investigate the AC impedance spectroscopy of interdigitated microelectrodes coated by an ultrathin passivation layer and operated in electrolytes with bacterial cells adherent to the surface. The first step is an accurate quantification of the device sensitivity helped by analytical models and two-dimensional simulations. The simulations are based on Poisson-Nernst-Planck equations and include the modeling of the sensor topolo...
We describe the realization of a fully-electronic label-free temperature-controlled biosensing platf...
Sensing and quantification of biomolecules are becoming increasingly important in medical diagnostic...
We present the co-integration of CMOS-compatible Al/Al2O3 interdigitated microelectrodes (IDEs) with...
The rapid and selective detection of whole bacterial cells is of interest for the development of Poi...
We present a 16 x 16 CMOS biosensor array aiming at impedance detection of whole-cell bacteria. Each...
For centuries, bacterial cells have been one of the major causes of human diseases, and are still re...
Impedimetric biosensors with a passivation layer, also called capacitive biosensors, have recently s...
Capacitive biosensors are promising tools toward 2 detection of bacterial cells. However, their sens...
A biosensor based on the measurement of capacitance changes has been designed and fabricated for sim...
Capacitive bioparticle detection is a promising method for point-of-care diagnosis. There are a wide...
Microsensing is a leading field in technology due to its wide application potential, not only in bio...
To enable impedimetric sensing of whole-cell bacteria in saline buffer with passivated microelectrod...
Point-of-care (PoC) diagnostics for bacterial detection offer tremendous prospects for public health...
Biosensing has been developed rapidly for a number of biomedical applications, including neural moni...
Rapid, real-time detection of pathogenic microorganisms is an emerging evolving field of research, e...
We describe the realization of a fully-electronic label-free temperature-controlled biosensing platf...
Sensing and quantification of biomolecules are becoming increasingly important in medical diagnostic...
We present the co-integration of CMOS-compatible Al/Al2O3 interdigitated microelectrodes (IDEs) with...
The rapid and selective detection of whole bacterial cells is of interest for the development of Poi...
We present a 16 x 16 CMOS biosensor array aiming at impedance detection of whole-cell bacteria. Each...
For centuries, bacterial cells have been one of the major causes of human diseases, and are still re...
Impedimetric biosensors with a passivation layer, also called capacitive biosensors, have recently s...
Capacitive biosensors are promising tools toward 2 detection of bacterial cells. However, their sens...
A biosensor based on the measurement of capacitance changes has been designed and fabricated for sim...
Capacitive bioparticle detection is a promising method for point-of-care diagnosis. There are a wide...
Microsensing is a leading field in technology due to its wide application potential, not only in bio...
To enable impedimetric sensing of whole-cell bacteria in saline buffer with passivated microelectrod...
Point-of-care (PoC) diagnostics for bacterial detection offer tremendous prospects for public health...
Biosensing has been developed rapidly for a number of biomedical applications, including neural moni...
Rapid, real-time detection of pathogenic microorganisms is an emerging evolving field of research, e...
We describe the realization of a fully-electronic label-free temperature-controlled biosensing platf...
Sensing and quantification of biomolecules are becoming increasingly important in medical diagnostic...
We present the co-integration of CMOS-compatible Al/Al2O3 interdigitated microelectrodes (IDEs) with...