We investigate by means of molecular dynamics simulations stretch-induced stepwise translocation of single-stranded DNA (ssDNA) through graphene nanopores. The intrinsic stepwise DNA motion, found to be largely independent of size and shape of the graphene nanopore, is brought about through alternating conformational changes between spontaneous adhesion of DNA bases to the rim of the graphene nanopore and unbinding due to mechanical force or electric field. The adhesion reduces the DNA bases’ vertical conformational fluctuations, facilitating base detection and recognition. A graphene membrane shaped as a quantum point contact permits, by means of transverse electronic conductance measurement, detection of the stepwise translocation of the ...
Nanopore-based single-molecule detection and analysis have been pursued intensively over the past de...
Graphene nanopore based sensor devices have shown great potential for the detection of DNA. To under...
Graphene nanopore has been promising the ultra-high resolution for DNA sequencing due to the atomic ...
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 ...
Using all-atom molecular dynamics and atomic-resolution Brownian dynamics, we simulate the transloca...
Using all-atom molecular dynamics and atomic-resolution Brownian dynamics, we simulate the transloca...
Using all-atom molecular dynamics and atomic-resolution Brownian dynamics, we simulate the transloca...
Using all-atom molecular dynamics and atomic-resolution Brownian dynamics, we simulate the transloca...
Using all-atom molecular dynamics and atomic-resolution Brownian dynamics, we simulate the transloca...
Using all-atom molecular dynamics and atomic-resolution Brownian dynamics, we simulate the transloca...
Using all-atom molecular dynamics and atomic-resolution Brownian dynamics, we simulate the transloca...
Control over interactions with biomolecules holds the key to applications of graphene in biotechnolo...
We study how double-stranded DNA translocates through graphene nanogaps. Nanogaps are fabricated wit...
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 nanopore based sensor devices have shown great potential for the detection of DNA. To under...
Graphene nanopore has been promising the ultra-high resolution for DNA sequencing due to the atomic ...
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 ...
Using all-atom molecular dynamics and atomic-resolution Brownian dynamics, we simulate the transloca...
Using all-atom molecular dynamics and atomic-resolution Brownian dynamics, we simulate the transloca...
Using all-atom molecular dynamics and atomic-resolution Brownian dynamics, we simulate the transloca...
Using all-atom molecular dynamics and atomic-resolution Brownian dynamics, we simulate the transloca...
Using all-atom molecular dynamics and atomic-resolution Brownian dynamics, we simulate the transloca...
Using all-atom molecular dynamics and atomic-resolution Brownian dynamics, we simulate the transloca...
Using all-atom molecular dynamics and atomic-resolution Brownian dynamics, we simulate the transloca...
Control over interactions with biomolecules holds the key to applications of graphene in biotechnolo...
We study how double-stranded DNA translocates through graphene nanogaps. Nanogaps are fabricated wit...
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 nanopore based sensor devices have shown great potential for the detection of DNA. To under...
Graphene nanopore has been promising the ultra-high resolution for DNA sequencing due to the atomic ...