The concentration detection limit (DL) of biomacromolecules attainable using a nanowire detector has become a topical issue. A DL of 10−15 M is required to reveal oncological and infectious diseases at an early stage. This study discusses the DL experimentally attainable in the subfemtomolar concentration range, and possible mechanisms explaining such a low-concentration DL through the cooperative effect of biomacromolecular complexes formed on the surface of the nanowire (NW) chip near the nanowire
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...
The detection of particular genetic sequences aids in the early detection and diagnosis of disease; ...
Detection of biological species is of great importance to numerous areas of medical and life science...
anowirefield-effect transistors (nano-FETs) enable dynamic label-free de-tection ofmolecules with hi...
We examine through analytical calculations and finite element simulations how the detection efficien...
Over the past decade, synthesized nanomaterials, such as carbon nanotube, nanoparticle, quantum dot,...
Over the past decade, synthesized nanomaterials, such as carbon nanotube, nanoparticle, quantum dot,...
The development of electrically addressable, label-free detectors for DNA and other biological macro...
The development of electrically addressable, label-free detectors for DNA and other biological macro...
There is a need for a new sensing device; one that is capable of sensing much lower concentrations a...
Over the past decade, synthesized nanomaterials, such as carbon nanotube, nanoparticle, quantum dot,...
Over the past decade, synthesized nanomaterials, such as carbon nanotube, nanoparticle, quantum dot,...
Over the past decade, synthesized nanomaterials, such as carbon nanotube, nanoparticle, quantum dot,...
Semiconductor nanowires are known to enhance the signal of fluorophores in their proximity. In our r...
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...
The detection of particular genetic sequences aids in the early detection and diagnosis of disease; ...
Detection of biological species is of great importance to numerous areas of medical and life science...
anowirefield-effect transistors (nano-FETs) enable dynamic label-free de-tection ofmolecules with hi...
We examine through analytical calculations and finite element simulations how the detection efficien...
Over the past decade, synthesized nanomaterials, such as carbon nanotube, nanoparticle, quantum dot,...
Over the past decade, synthesized nanomaterials, such as carbon nanotube, nanoparticle, quantum dot,...
The development of electrically addressable, label-free detectors for DNA and other biological macro...
The development of electrically addressable, label-free detectors for DNA and other biological macro...
There is a need for a new sensing device; one that is capable of sensing much lower concentrations a...
Over the past decade, synthesized nanomaterials, such as carbon nanotube, nanoparticle, quantum dot,...
Over the past decade, synthesized nanomaterials, such as carbon nanotube, nanoparticle, quantum dot,...
Over the past decade, synthesized nanomaterials, such as carbon nanotube, nanoparticle, quantum dot,...
Semiconductor nanowires are known to enhance the signal of fluorophores in their proximity. In our r...
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...
The detection of particular genetic sequences aids in the early detection and diagnosis of disease; ...