2D nanoslit devices, where two crystals with atomically flat surfaces are separated by only a few nanometers, have attracted considerable attention because their tunable control over the confinement allows for the discovery of unusual transport behavior of gas, water, and ions. Here, the passage of double-stranded DNA molecules is studied through nanoslits fabricated from exfoliated 2D materials, such as graphene or hexagonal boron nitride, and the DNA polymer behavior is examined in this tight confinement. Two types of events are observed in the ionic current: long current blockades that signal DNA translocation and short spikes where DNA enters the slits but withdraws. DNA translocation events exhibit three distinct phases in their curren...
Control over interactions with biomolecules holds the key to applications of graphene in biotechnolo...
Nanopore-based single-molecule detection and analysis have been pursued intensively over the past de...
The transport behavior of lambda-DNA (48 kbp) in fused silica nanoslits is investigated upon applica...
2D nanoslit devices, where two crystals with atomically flat surfaces are separated by only a few na...
Solid-state nanopore sequencing is now confronted with problems of stochastic pore clogging and too ...
Two-dimensional (2D) materials have transformed single molecule nanoscale manipulation and molecular...
The objective of this thesis is to study the dynamic properties of DNA molecules in nanofluidic slit...
We study how double-stranded DNA translocates through graphene nanogaps. Nanogaps are fabricated wit...
The successful design of nanofluidic devices for the manipulation of biopolymers requires an underst...
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...
Single layer graphene, as a one-atom-thick highly conductive layer, is an exciting candidate for hi...
Entropy-driven polymer dynamics at the nanoscale is fundamentally important in biological systems bu...
The electrokinetic transport behavior of ?-DNA (48?kbp) in 20?nm-high fused-silica nanoslits in the ...
The effective transport of a single-stranded DNA (ssDNA) molecule through a solid-state nanopore is ...
Control over interactions with biomolecules holds the key to applications of graphene in biotechnolo...
Nanopore-based single-molecule detection and analysis have been pursued intensively over the past de...
The transport behavior of lambda-DNA (48 kbp) in fused silica nanoslits is investigated upon applica...
2D nanoslit devices, where two crystals with atomically flat surfaces are separated by only a few na...
Solid-state nanopore sequencing is now confronted with problems of stochastic pore clogging and too ...
Two-dimensional (2D) materials have transformed single molecule nanoscale manipulation and molecular...
The objective of this thesis is to study the dynamic properties of DNA molecules in nanofluidic slit...
We study how double-stranded DNA translocates through graphene nanogaps. Nanogaps are fabricated wit...
The successful design of nanofluidic devices for the manipulation of biopolymers requires an underst...
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...
Single layer graphene, as a one-atom-thick highly conductive layer, is an exciting candidate for hi...
Entropy-driven polymer dynamics at the nanoscale is fundamentally important in biological systems bu...
The electrokinetic transport behavior of ?-DNA (48?kbp) in 20?nm-high fused-silica nanoslits in the ...
The effective transport of a single-stranded DNA (ssDNA) molecule through a solid-state nanopore is ...
Control over interactions with biomolecules holds the key to applications of graphene in biotechnolo...
Nanopore-based single-molecule detection and analysis have been pursued intensively over the past de...
The transport behavior of lambda-DNA (48 kbp) in fused silica nanoslits is investigated upon applica...