We demonstrate the functionalization of silicon nanowire based field effect transistors (SiNW FETs) FETs with stimuli-responsive polymer brushes of poly(N-isopropylacrylamide) (PNIPAAM) and poly(acrylic acid) (PAA). Surface functionalization was confirmed by atomic force microscopy, contact angle measurements, and verified electrically using a silicon nanowire based field effect transistor sensor device. For thermo-responsive PNIPAAM, the physicochemical properties (i.e., a reversible phase transition, wettability) were induced by crossing the lower critical solution temperature (LCST) of about 32 C. Taking advantage of this property, osteosarcomic SaoS-2 cells were cultured on PNIPAAM-modified sensors at temperatures above the LCST, and co...
2015-06-19Researchers have been developing Point‐Of‐Care Testing (POCT) devices over the past decade...
In this dissertation I present results on our efforts to increase the sensitivity and selectivity of...
ABSTRACT: Transistor-based nanoelectronic sensors are capable of label-free real-time chemical and b...
We demonstrate the functionalization of silicon nanowire based field effect transistors (SiNW FETs) F...
In this dissertation, I present methods to improve the sensitivity and specificity of Silicon nanowi...
Silicon nanowire-based metal-oxide-semiconductor field-effect transistors (SiNW MOSFETs) have been d...
The study of silicon nanowire-FET-based electronic biosensor applications is an emerging scientific ...
Silicon nanowires are structures made from silicon with at least one spatial dimension in the nanome...
AbstractSilicon nanowire (SiNW) field effect transistor based biosensors have already been proven to...
Biosensors based on nano-scale electronic devices have the potential to achieve exquisite sensitivit...
We report amplification of biomolecular recognition signal in lithographically defined silicon nanoc...
A biocompatible and functional interface can improve the sensitivity of bioelectronics. Here, 3-amin...
Silicon-On-Insulator based nanowire field-effect-transistors were used to detect the molecular charge...
Sensitive and quantitative analysis of proteins is central to disease diagnosis, drug screening, and...
[EN] Silicon nanowire (SiNW) field-effect transistors (FETs) have been developed as very sensitive a...
2015-06-19Researchers have been developing Point‐Of‐Care Testing (POCT) devices over the past decade...
In this dissertation I present results on our efforts to increase the sensitivity and selectivity of...
ABSTRACT: Transistor-based nanoelectronic sensors are capable of label-free real-time chemical and b...
We demonstrate the functionalization of silicon nanowire based field effect transistors (SiNW FETs) F...
In this dissertation, I present methods to improve the sensitivity and specificity of Silicon nanowi...
Silicon nanowire-based metal-oxide-semiconductor field-effect transistors (SiNW MOSFETs) have been d...
The study of silicon nanowire-FET-based electronic biosensor applications is an emerging scientific ...
Silicon nanowires are structures made from silicon with at least one spatial dimension in the nanome...
AbstractSilicon nanowire (SiNW) field effect transistor based biosensors have already been proven to...
Biosensors based on nano-scale electronic devices have the potential to achieve exquisite sensitivit...
We report amplification of biomolecular recognition signal in lithographically defined silicon nanoc...
A biocompatible and functional interface can improve the sensitivity of bioelectronics. Here, 3-amin...
Silicon-On-Insulator based nanowire field-effect-transistors were used to detect the molecular charge...
Sensitive and quantitative analysis of proteins is central to disease diagnosis, drug screening, and...
[EN] Silicon nanowire (SiNW) field-effect transistors (FETs) have been developed as very sensitive a...
2015-06-19Researchers have been developing Point‐Of‐Care Testing (POCT) devices over the past decade...
In this dissertation I present results on our efforts to increase the sensitivity and selectivity of...
ABSTRACT: Transistor-based nanoelectronic sensors are capable of label-free real-time chemical and b...