[[abstract]]Miniaturized complementary metal-oxide semiconductor (CMOS) capacitive sensors presented in this work are capable of providing sensitive detection in the sub-nM range for biosensing applications. A convenient post-CMOS fabrication process is proposed to make sub-μm interdigitated microelectrodes covered by inter-metal dielectric layer as the sensing interface. Capacitance change due to the electrode-analyte impedance is detected by the integrated continuous-time sensing circuit. For immunodetection of mouse IgG and anti-mouse IgG enhanced by 25% gold nanoparticles, the produced interface capacitance changes after specific bindings were -4, -7.4, and -17 fF for the 13-, 95-, and 925-fF microelectrode designs, respectively. Detect...
This paper presents a biosensor-CMOS platform for measuring the capacitive coupling of biorecognitio...
This paper presents, for the first time, the development of a nickel-based, reliable alternative ele...
none7Fully-electronic detection of cells and microbeads is achieved on a 320x320 array of capacitive...
[[abstract]]Interdigitated microelectrodes integrated with CMOS sensing circuitry are presented in t...
[[abstract]]This work presents miniaturized CMOS (complementary metal oxide semiconductor) capacitiv...
Microsensing is a leading field in technology due to its wide application potential, not only in bio...
Biosensing has been developed rapidly for a number of biomedical applications, including neural moni...
CMOS capacitive sensors reported for high-accuracy cellular molecular measurements typically suffer ...
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...
The detection of DNA by electrical based methods still faces the challenge of the low amounts of gen...
The rapid and selective detection of whole bacterial cells is of interest for the development of Poi...
The experimental detection of capacitance variations with a resolution as low as few zeptoFarads (10...
This paper presents a capacitive biosensor that measures capacitances of living cells in electrolyti...
This paper presents a biosensor-CMOS platform for measuring the capacitive coupling of biorecognitio...
This paper presents, for the first time, the development of a nickel-based, reliable alternative ele...
none7Fully-electronic detection of cells and microbeads is achieved on a 320x320 array of capacitive...
[[abstract]]Interdigitated microelectrodes integrated with CMOS sensing circuitry are presented in t...
[[abstract]]This work presents miniaturized CMOS (complementary metal oxide semiconductor) capacitiv...
Microsensing is a leading field in technology due to its wide application potential, not only in bio...
Biosensing has been developed rapidly for a number of biomedical applications, including neural moni...
CMOS capacitive sensors reported for high-accuracy cellular molecular measurements typically suffer ...
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...
The detection of DNA by electrical based methods still faces the challenge of the low amounts of gen...
The rapid and selective detection of whole bacterial cells is of interest for the development of Poi...
The experimental detection of capacitance variations with a resolution as low as few zeptoFarads (10...
This paper presents a capacitive biosensor that measures capacitances of living cells in electrolyti...
This paper presents a biosensor-CMOS platform for measuring the capacitive coupling of biorecognitio...
This paper presents, for the first time, the development of a nickel-based, reliable alternative ele...
none7Fully-electronic detection of cells and microbeads is achieved on a 320x320 array of capacitive...