We propose a single-electron transistor (SET)-based nanopore sensor for DNA sequencing, which consists of source, drain, and gate electrodes, as well as a nanopore where the DNA molecule is pulled through. For nanopore sensors based on transverse electronic transport, generally, the tunneling current is relatively small due to the weak coupling between the molecule and electrodes. We take full advantage of this feature by introducing SET to make the device operate in Coulomb-blockade regime. Through first-principles simulations, the charge stability diagrams of the nucleobases within the SET-nanopore environment are demonstrated to be distinctive for each molecule and, more importantly, independent of the nucleobase orientation, which can b...
ABSTRACT We report on the fabrication and characterization of a DNA nanopore detector with integrate...
Voltage biased solid-state nanopores are used to detect and characterize individual single stranded ...
We propose an approach for nanopore-based DNA sequencing using characteristic transverse differentia...
The main focus of this work is the development of a solid‐state nanopore detector with embedded tunn...
Nanopores could potentially be used to perform single-molecule DNA sequencing at low cost and with h...
Nanopores could potentially be used to perform single molecule DNA sequencing at low cost and with h...
178 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2005.Lastly, we describe using a n...
AbstractWe have previously demonstrated that a nanometer-diameter pore in a nanometer-thick metal-ox...
AbstractWe study theoretically the feasibility of using transverse electronic transport within a nan...
DNA sequencing techniques are critical in order to investigate genes’ functions. Obtaining fa...
The pursuit of inexpensive DNA sequencing lies at the interface between nanotechnology and biotechno...
Nanopore-based single-molecule detection and analysis have been pursued intensively over the past de...
Nanopores are small (1–100 nm diameter) holes/channels formed in biological membranes (Fig. 1) or fa...
We describe a scalable device design of a dense array of multiple nanopores made from nanoscale semi...
Solid-state nanopores have emerged as promising replacement candidates for single-molecule sensing o...
ABSTRACT We report on the fabrication and characterization of a DNA nanopore detector with integrate...
Voltage biased solid-state nanopores are used to detect and characterize individual single stranded ...
We propose an approach for nanopore-based DNA sequencing using characteristic transverse differentia...
The main focus of this work is the development of a solid‐state nanopore detector with embedded tunn...
Nanopores could potentially be used to perform single-molecule DNA sequencing at low cost and with h...
Nanopores could potentially be used to perform single molecule DNA sequencing at low cost and with h...
178 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2005.Lastly, we describe using a n...
AbstractWe have previously demonstrated that a nanometer-diameter pore in a nanometer-thick metal-ox...
AbstractWe study theoretically the feasibility of using transverse electronic transport within a nan...
DNA sequencing techniques are critical in order to investigate genes’ functions. Obtaining fa...
The pursuit of inexpensive DNA sequencing lies at the interface between nanotechnology and biotechno...
Nanopore-based single-molecule detection and analysis have been pursued intensively over the past de...
Nanopores are small (1–100 nm diameter) holes/channels formed in biological membranes (Fig. 1) or fa...
We describe a scalable device design of a dense array of multiple nanopores made from nanoscale semi...
Solid-state nanopores have emerged as promising replacement candidates for single-molecule sensing o...
ABSTRACT We report on the fabrication and characterization of a DNA nanopore detector with integrate...
Voltage biased solid-state nanopores are used to detect and characterize individual single stranded ...
We propose an approach for nanopore-based DNA sequencing using characteristic transverse differentia...