International audienceWe have investigated the role of electrostatic interactions in the transport of nucleic acids and ions through nanopores. The passage of DNA through nanopores has so far been conjectured to involve a free-energy barrier for entry, followed by a downhill translocation where the driving voltage accelerates the polymer. We have tested the validity of this conjecture by using two toxins, α-hemolysin and aerolysin, which differ in their shape, size, and charge. The characteristic timescales in each toxin as a function of temperature show that the entry barrier is ∼15kBT and the translocation barrier is ∼35kBT, although the electrical force in the latter step is much stronger. Resolution of this fact, using a theoretical mod...
AbstractWe demonstrate that voltage-biased solid-state nanopores can transiently localize DNA in an ...
We present measurements of the change in ionic conductance due to double-stranded (ds) DNA transloca...
Solid-state nanopores are single-molecule sensors that measure changes in ionic current as charged p...
International audienceWe have investigated the role of electrostatic interactions in the transport o...
AbstractWe have investigated the role of electrostatic interactions in the transport of nucleic acid...
In order to gain a better physical understanding of DNA translocations through solid-state nanopores...
AbstractWe investigate the voltage-driven translocation dynamics of individual DNA molecules through...
ABSTRACT We investigate the voltage-driven translocation dynamics of individual DNA molecules throug...
An interesting smooth blocked nanopore and corresponding "current ladder" phenomenon was o...
Protein nanopores show great potential as low-cost detectors in DNA sequencing devices. To date, res...
Experiments using nanopores demonstrated that a salt gradient enhances the capture rate of DNA and r...
AbstractExperiments using nanopores demonstrated that a salt gradient enhances the capture rate of D...
AbstractWe have previously demonstrated that a nanometer-diameter pore in a nanometer-thick metal-ox...
Solid-state nanopores have emerged as possible candidates for next-generation DNA sequencing devices...
The current blockage during DNA molecule translocation through a solid-state nanopore is very import...
AbstractWe demonstrate that voltage-biased solid-state nanopores can transiently localize DNA in an ...
We present measurements of the change in ionic conductance due to double-stranded (ds) DNA transloca...
Solid-state nanopores are single-molecule sensors that measure changes in ionic current as charged p...
International audienceWe have investigated the role of electrostatic interactions in the transport o...
AbstractWe have investigated the role of electrostatic interactions in the transport of nucleic acid...
In order to gain a better physical understanding of DNA translocations through solid-state nanopores...
AbstractWe investigate the voltage-driven translocation dynamics of individual DNA molecules through...
ABSTRACT We investigate the voltage-driven translocation dynamics of individual DNA molecules throug...
An interesting smooth blocked nanopore and corresponding "current ladder" phenomenon was o...
Protein nanopores show great potential as low-cost detectors in DNA sequencing devices. To date, res...
Experiments using nanopores demonstrated that a salt gradient enhances the capture rate of DNA and r...
AbstractExperiments using nanopores demonstrated that a salt gradient enhances the capture rate of D...
AbstractWe have previously demonstrated that a nanometer-diameter pore in a nanometer-thick metal-ox...
Solid-state nanopores have emerged as possible candidates for next-generation DNA sequencing devices...
The current blockage during DNA molecule translocation through a solid-state nanopore is very import...
AbstractWe demonstrate that voltage-biased solid-state nanopores can transiently localize DNA in an ...
We present measurements of the change in ionic conductance due to double-stranded (ds) DNA transloca...
Solid-state nanopores are single-molecule sensors that measure changes in ionic current as charged p...