Sensitive sequencing of biopolymers by nanopore-based translocation techniques requires an extension of the time spent by the molecule in the pore. We develop an electrostatic theory of polymer translocation to show that the translocation time can be extended via the dielectric trapping of the polymer. In dilute salt conditions, the dielectric contrast between the low permittivity membrane and large permittivity solvent gives rise to attractive interactions between the cis and trans portions of the polymer. This self-attraction acts as a dielectric trap that can enhance the translocation time by orders of magnitude. We also find that electrostatic interactions result in the piecewise scaling of the translocation time τ with the polymer leng...
The theoretical formulation of driven polymer translocation through nanopores is complicated by the ...
We probe the electrostatic cost associated with the approach phase of DNA translocation events. With...
The theoretical formulation of driven polymer translocation through nanopores is complicated by the ...
Sensitive sequencing of biopolymers by nanopore-based translocation techniques requires an extension...
Sensitive sequencing of biopolymers by nanopore-based translocation techniques requires an extension...
Sensitive sequencing of biopolymers by nanopore-based translocation techniques requires an extension...
Polymer translocation experiments typically involve anionic polyelectrolytes such as DNA molecules d...
The theoretical formulation of driven polymer translocation through nanopores is complicated by the ...
Polymer translocation experiments typically involve anionic polyelectrolytes such as DNA molecules d...
© 2016 Author(s).We develop an analytical theory that accounts for the image and surface charge inte...
Polymer translocation experiments typically involve anionic polyelectrolytes such as DNA molecules d...
Polymer translocation experiments typically involve anionic polyelectrolytes such as DNA molecules d...
We develop an analytical theory that accounts for the image and surface charge interactions between ...
We develop an analytical theory that accounts for the image and surface charge interactions between ...
Recently, translocations of polyelectrolyte molecules through membrane channel protein pores or soli...
The theoretical formulation of driven polymer translocation through nanopores is complicated by the ...
We probe the electrostatic cost associated with the approach phase of DNA translocation events. With...
The theoretical formulation of driven polymer translocation through nanopores is complicated by the ...
Sensitive sequencing of biopolymers by nanopore-based translocation techniques requires an extension...
Sensitive sequencing of biopolymers by nanopore-based translocation techniques requires an extension...
Sensitive sequencing of biopolymers by nanopore-based translocation techniques requires an extension...
Polymer translocation experiments typically involve anionic polyelectrolytes such as DNA molecules d...
The theoretical formulation of driven polymer translocation through nanopores is complicated by the ...
Polymer translocation experiments typically involve anionic polyelectrolytes such as DNA molecules d...
© 2016 Author(s).We develop an analytical theory that accounts for the image and surface charge inte...
Polymer translocation experiments typically involve anionic polyelectrolytes such as DNA molecules d...
Polymer translocation experiments typically involve anionic polyelectrolytes such as DNA molecules d...
We develop an analytical theory that accounts for the image and surface charge interactions between ...
We develop an analytical theory that accounts for the image and surface charge interactions between ...
Recently, translocations of polyelectrolyte molecules through membrane channel protein pores or soli...
The theoretical formulation of driven polymer translocation through nanopores is complicated by the ...
We probe the electrostatic cost associated with the approach phase of DNA translocation events. With...
The theoretical formulation of driven polymer translocation through nanopores is complicated by the ...