[[abstract]]DNA is a wonderful material for the construction of nanostructures for a variety of applications. This paper describes a novel platform integrating single-stranded DNA (ssDNA) nanotemplates with CMOS-compatible, field-effect sensors. The field-effect sensor was based on oxide-semiconductor field-effect transistors (OSFETs), which were monolithically-integrated with signal-processing circuits to enhance the signal-to-noise ratio, and to detect the construction of ssDNA nanotemplate from complex DNA-protein interactions. The ssDNA nanotemplate on the transistor arrays was prepared by isothermal rolling circle amplification (RCA) through DNA aptamer-protein recognition and self-assembly strategy. The growth of the DNA nanostructure...
Molecule detection is a workhorse in life sciences and medicine, for example in cancer diagnosis and...
In this paper, a normal nano-sensor technology using "top-down" poly-silicon nanowire fiel...
Nanotechnology spans and merges very diverse areas from device physics to molecular self-assembly, f...
Electronic DNA sensors based on field-effect transistor arrays operating in liquid environment, offe...
Herein, we describe a novel approach for rapid, label-free and specific DNA detection by applying ro...
In this study, a field effect transistor (FET)-type biosensor based on 0.5 mum standard complementar...
We have fabricated field effect transistor (FET)-type biomolecular sensor for the detection of the d...
© 2016 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Silicon nanowire field-effect transistors (SiNW-...
We report a label-free field-effect sensing array integrated with complementary metal-oxide semicond...
Silicon-On-Insulator based nanowire field-effect-transistors were used to detect the molecular charge...
We describe a novel application for detecting specific single strand DNA sequences using multisegmen...
An innovative JFET bio-transistor, based on a metal oxide (MOX) nanowire bundle, was developed in or...
This thesis is mainly focused on DNA molecules and especially on self-assembled DNA constructs and ...
Biosensors, which harness the unique specific binding properties of biomaterials such as proteis, ar...
Biosensors, which harness the unique specific binding properties of biomaterials such as proteis, ar...
Molecule detection is a workhorse in life sciences and medicine, for example in cancer diagnosis and...
In this paper, a normal nano-sensor technology using "top-down" poly-silicon nanowire fiel...
Nanotechnology spans and merges very diverse areas from device physics to molecular self-assembly, f...
Electronic DNA sensors based on field-effect transistor arrays operating in liquid environment, offe...
Herein, we describe a novel approach for rapid, label-free and specific DNA detection by applying ro...
In this study, a field effect transistor (FET)-type biosensor based on 0.5 mum standard complementar...
We have fabricated field effect transistor (FET)-type biomolecular sensor for the detection of the d...
© 2016 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Silicon nanowire field-effect transistors (SiNW-...
We report a label-free field-effect sensing array integrated with complementary metal-oxide semicond...
Silicon-On-Insulator based nanowire field-effect-transistors were used to detect the molecular charge...
We describe a novel application for detecting specific single strand DNA sequences using multisegmen...
An innovative JFET bio-transistor, based on a metal oxide (MOX) nanowire bundle, was developed in or...
This thesis is mainly focused on DNA molecules and especially on self-assembled DNA constructs and ...
Biosensors, which harness the unique specific binding properties of biomaterials such as proteis, ar...
Biosensors, which harness the unique specific binding properties of biomaterials such as proteis, ar...
Molecule detection is a workhorse in life sciences and medicine, for example in cancer diagnosis and...
In this paper, a normal nano-sensor technology using "top-down" poly-silicon nanowire fiel...
Nanotechnology spans and merges very diverse areas from device physics to molecular self-assembly, f...