Nanowire field-effect transistors are suited to study the activity of biomolecules in bionanotechnology. The changes of biomolecules process are efficiently affected the charge at the nanowire surface; thus, the electrical characterization of NW-FET is changed. Although NW-FET is a well-known device in bioapplications, however, the intrinsic electrical characterization of NW-FET effect on real electrical measurement is not well studied. We present herein a novel measurement method to avoid errors in electrical characteristic of nanowire field-effect transistors. A physical model is developed to explore the effect of the leakage current, which is influenced by the charging effect of an equivalent capacitor in a NW-FET. We also present a slop...
Trapping–detrapping processes in nanostructures are generally considered to be destabilizing factors...
Trapping–detrapping processes in nanostructures are generally considered to be destabilizing factors...
Abstract – Detection and quantification of very small amounts of biological species become necessary...
ABSTRACT: Nanowire field-effect transistors are suited to study the activity of biomolecules in bion...
In this dissertation, I present methods to improve the sensitivity and specificity of Silicon nanowi...
Over the past 15 years, biologically sensitive field-effect-transistors (bioFETs) employing a nanowi...
Biosensors based on nanowire field effect transistor (FET) have received much attention in recent ye...
We report amplification of biomolecular recognition signal in lithographically defined silicon nanoc...
The sensing mechanism of nanowire field effect transistor (NWFET) biosensors is investigated by taki...
In this dissertation I present results on our efforts to increase the sensitivity and selectivity of...
Silicon nanowires are structures made from silicon with at least one spatial dimension in the nanome...
In this paper, a normal nano-sensor technology using "top-down" poly-silicon nanowire fiel...
We review transport and noise properties of liquid-gated Si nanowire field-effect transistor structu...
Biosensors based on nano-scale electronic devices have the potential to achieve exquisite sensitivit...
Silicon nanowire field effect transistor (FET) sensors have demonstrated their ability for rapid and...
Trapping–detrapping processes in nanostructures are generally considered to be destabilizing factors...
Trapping–detrapping processes in nanostructures are generally considered to be destabilizing factors...
Abstract – Detection and quantification of very small amounts of biological species become necessary...
ABSTRACT: Nanowire field-effect transistors are suited to study the activity of biomolecules in bion...
In this dissertation, I present methods to improve the sensitivity and specificity of Silicon nanowi...
Over the past 15 years, biologically sensitive field-effect-transistors (bioFETs) employing a nanowi...
Biosensors based on nanowire field effect transistor (FET) have received much attention in recent ye...
We report amplification of biomolecular recognition signal in lithographically defined silicon nanoc...
The sensing mechanism of nanowire field effect transistor (NWFET) biosensors is investigated by taki...
In this dissertation I present results on our efforts to increase the sensitivity and selectivity of...
Silicon nanowires are structures made from silicon with at least one spatial dimension in the nanome...
In this paper, a normal nano-sensor technology using "top-down" poly-silicon nanowire fiel...
We review transport and noise properties of liquid-gated Si nanowire field-effect transistor structu...
Biosensors based on nano-scale electronic devices have the potential to achieve exquisite sensitivit...
Silicon nanowire field effect transistor (FET) sensors have demonstrated their ability for rapid and...
Trapping–detrapping processes in nanostructures are generally considered to be destabilizing factors...
Trapping–detrapping processes in nanostructures are generally considered to be destabilizing factors...
Abstract – Detection and quantification of very small amounts of biological species become necessary...