Many theoretical studies predict that DNA sequencing should be feasible by monitoring the transverse current through a graphene nanoribbon while a DNA molecule translocates through a nanopore in that ribbon. Such a readout would benefit from the special transport properties of graphene, provide ultimate spatial resolution because of the single-atom layer thickness of graphene, and facilitate high-bandwidth measurements. Previous experimental attempts to measure such transverse inplane signals were however dominated by a trivial capacitive response. Here, we explore the feasibility of the approach using a custom-made differential current amplifier that discriminates between the capacitive current signal and the resistive response in the grap...
Graphene is a unique material with a thickness as low as a single atom, high in-plane conductivity a...
We investigate by means of molecular dynamics simulations stretch-induced stepwise translocation of ...
We investigate by means of molecular dynamics simulations stretch-induced stepwise translocation of ...
Many theoretical studies predict that DNA sequencing should be feasible by monitoring the transverse...
Many theoretical studies predict that DNA sequencing should be feasible by monitoring the transverse...
We study two-terminal devices for DNA sequencing that consist of a metallic graphene nanoribbon with...
DNA sequencing techniques are critical in order to investigate genes’ functions. Obtaining fa...
Nanopore-based single-molecule detection and analysis have been pursued intensively over the past de...
Nanopore-based single-molecule detection and analysis have been pursued intensively over the past de...
Graphene-based nanopore devices are promising candidates for next-generation DNA sequencing. Here we...
We propose an improvement for nanopore-based DNA analysis via transverse transport using graphene as...
Graphene nanopore has been promising the ultra-high resolution for DNA sequencing due to the atomic ...
Over the past decade, interest in using graphene in condensed-matter physics and materials science a...
Graphene is a unique material with a thickness as low as a single atom, high in-plane conductivity a...
Graphene is a unique material with a thickness as low as a single atom, high in-plane conductivity a...
Graphene is a unique material with a thickness as low as a single atom, high in-plane conductivity a...
We investigate by means of molecular dynamics simulations stretch-induced stepwise translocation of ...
We investigate by means of molecular dynamics simulations stretch-induced stepwise translocation of ...
Many theoretical studies predict that DNA sequencing should be feasible by monitoring the transverse...
Many theoretical studies predict that DNA sequencing should be feasible by monitoring the transverse...
We study two-terminal devices for DNA sequencing that consist of a metallic graphene nanoribbon with...
DNA sequencing techniques are critical in order to investigate genes’ functions. Obtaining fa...
Nanopore-based single-molecule detection and analysis have been pursued intensively over the past de...
Nanopore-based single-molecule detection and analysis have been pursued intensively over the past de...
Graphene-based nanopore devices are promising candidates for next-generation DNA sequencing. Here we...
We propose an improvement for nanopore-based DNA analysis via transverse transport using graphene as...
Graphene nanopore has been promising the ultra-high resolution for DNA sequencing due to the atomic ...
Over the past decade, interest in using graphene in condensed-matter physics and materials science a...
Graphene is a unique material with a thickness as low as a single atom, high in-plane conductivity a...
Graphene is a unique material with a thickness as low as a single atom, high in-plane conductivity a...
Graphene is a unique material with a thickness as low as a single atom, high in-plane conductivity a...
We investigate by means of molecular dynamics simulations stretch-induced stepwise translocation of ...
We investigate by means of molecular dynamics simulations stretch-induced stepwise translocation of ...