We describe the realization of a fully-electronic label-free temperature-controlled biosensing platform aimed to overcome the Debye screening limit over a wide range of electrolyte salt concentrations. It is based on an improved version of a 90 nm CMOS integrated circuit featuring a nanocapacitor array, readout and A/D conversion circuitry, and an FPGA-based interface board with NIOS II soft processor. We describe the chip's processing, the mounting, the microfluidics, the temperature control system, as well as the calibration and compensation procedures to reduce systematic errors, which altogether make up a complete quantitative sensor platform. Capacitance spectra recorded up to 50-70 MHz are shown and successfully compared to prediction...
A significant impediment to the use of impedance spectroscopy in bio-sensing is the electrode polari...
We present a 16 x 16 CMOS biosensor array aiming at impedance detection of whole-cell bacteria. Each...
AbstractThe experimental detection of capacitance variations with a resolution as low as few zeptoFa...
We describe the realization of a fully-electronic label-free temperature-controlled biosensing platf...
Electrochemical biosensors are attractive due to their ease of integration,\ud miniaturization and c...
ConspectusWe have developed a measurement platform for performing high-frequency AC detection at nan...
Platforms that offer massively parallel, label-free biosensing can, in principle, be created by comb...
High frequency impedance spectroscopy (HFIS) biosensors based on nano-electrode arrays (NEA) demons...
One major drawback of impedimetric biosensors is their inability to work efficiently in high-salt so...
We report unprecedented ultra high frequency capacitance spectroscopy measurements up to 500 MHz on ...
Electrochemical biosensors, built using complimentary-metal-oxide semiconductor (CMOS) technology, ...
The rapid and selective detection of whole bacterial cells is of interest for the development of Poi...
CMOS capacitive sensors reported for high-accuracy cellular molecular measurements typically suffer ...
For centuries, bacterial cells have been one of the major causes of human diseases, and are still re...
The rapid and selective detection of whole bacterial cells is of interest for the development of Poi...
A significant impediment to the use of impedance spectroscopy in bio-sensing is the electrode polari...
We present a 16 x 16 CMOS biosensor array aiming at impedance detection of whole-cell bacteria. Each...
AbstractThe experimental detection of capacitance variations with a resolution as low as few zeptoFa...
We describe the realization of a fully-electronic label-free temperature-controlled biosensing platf...
Electrochemical biosensors are attractive due to their ease of integration,\ud miniaturization and c...
ConspectusWe have developed a measurement platform for performing high-frequency AC detection at nan...
Platforms that offer massively parallel, label-free biosensing can, in principle, be created by comb...
High frequency impedance spectroscopy (HFIS) biosensors based on nano-electrode arrays (NEA) demons...
One major drawback of impedimetric biosensors is their inability to work efficiently in high-salt so...
We report unprecedented ultra high frequency capacitance spectroscopy measurements up to 500 MHz on ...
Electrochemical biosensors, built using complimentary-metal-oxide semiconductor (CMOS) technology, ...
The rapid and selective detection of whole bacterial cells is of interest for the development of Poi...
CMOS capacitive sensors reported for high-accuracy cellular molecular measurements typically suffer ...
For centuries, bacterial cells have been one of the major causes of human diseases, and are still re...
The rapid and selective detection of whole bacterial cells is of interest for the development of Poi...
A significant impediment to the use of impedance spectroscopy in bio-sensing is the electrode polari...
We present a 16 x 16 CMOS biosensor array aiming at impedance detection of whole-cell bacteria. Each...
AbstractThe experimental detection of capacitance variations with a resolution as low as few zeptoFa...