Graphene is a unique material with a thickness as low as a single atom, high in-plane conductivity and a robust lattice that is self-supporting over large length scales. Schematically, graphene is an ideal solid-state material for tuning the properties of a nanopore because self-supported sheets, ranging from single to multiple atomic layers, can create pores with near-arbitrary dimensions which can provide exquisite control of the electric field drop within the pore. In this study, we characterize the drilling kinetics of nanopores using a thermionic electron source and various electron beam fluxes to minimize secondary hole formation. Once established, we investigated the use of multilayer graphene to create highly tailored nanostructures...
Nanopores are impedance based bio-sensors. The principle of nanopore sensors is analogous to that of...
The use of nanopore biosensors is set to be extremely important in developing precise single molecul...
Many theoretical studies predict that DNA sequencing should be feasible by monitoring the transverse...
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...
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...
It has recently been recognized that solid-state nanopores in single-atomic-layer graphene membranes...
We propose an improvement for nanopore-based DNA analysis via transverse transport using graphene as...
To demonstrate the potential of nanopores in bilayer graphene for DNA sequencing, we computed the cu...
Graphene nanopore based sensor devices have shown great potential for the detection of DNA. To under...
Many theoretical studies predict that DNA sequencing should be feasible by monitoring the transverse...
In spite of significant advances in the detection, separation and counting of single biological mole...
Two-dimensional (2D) materials have transformed single molecule nanoscale manipulation and molecular...
Two-dimensional (2D) materials have transformed single molecule nanoscale manipulation and molecular...
Nanopores are impedance based bio-sensors. The principle of nanopore sensors is analogous to that of...
The use of nanopore biosensors is set to be extremely important in developing precise single molecul...
Many theoretical studies predict that DNA sequencing should be feasible by monitoring the transverse...
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...
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...
It has recently been recognized that solid-state nanopores in single-atomic-layer graphene membranes...
We propose an improvement for nanopore-based DNA analysis via transverse transport using graphene as...
To demonstrate the potential of nanopores in bilayer graphene for DNA sequencing, we computed the cu...
Graphene nanopore based sensor devices have shown great potential for the detection of DNA. To under...
Many theoretical studies predict that DNA sequencing should be feasible by monitoring the transverse...
In spite of significant advances in the detection, separation and counting of single biological mole...
Two-dimensional (2D) materials have transformed single molecule nanoscale manipulation and molecular...
Two-dimensional (2D) materials have transformed single molecule nanoscale manipulation and molecular...
Nanopores are impedance based bio-sensors. The principle of nanopore sensors is analogous to that of...
The use of nanopore biosensors is set to be extremely important in developing precise single molecul...
Many theoretical studies predict that DNA sequencing should be feasible by monitoring the transverse...