International audienceWe use solid-state nanopores to study the dynamics of single electrically charged colloids through nanopores as a function of applied voltage. We show that the presence of a single colloid inside of the pore changes the pore resistance, in agreement with theory. The normalized ionic current blockade increases with the applied voltage and remains constant when the electrical force increases even more. We observe short and long events of current blockades. Their durations are associated, respectively, with low and high current variation. The ratio of long events increases with the electrical force. The events frequency increases exponentially as a function of applied voltage and saturates at high voltage. The dwelling ti...
ABSTRACT: Electrically driven ionic transport of room-temperature ionic liquids (RTILs) through nano...
International audienceSingle macromolecule detection through a single nanopore is based on resistive...
Signal delay is a crucial factor in resistive pulse analyses using low-thickness-to-diameter aspect-...
International audienceWe use solid-state nanopores to study the dynamics of single electrically char...
International audienceWe report experimentally the dynamic properties of the entry and transport of ...
In this dissertation, I discuss various aspects of the dynamics of charged particles in nanopore sys...
From electrical current to ecological and biological systems, fluctuations are characterised based o...
Tunable nanopores fabricated in elastomeric membranes have been used to study the dependence of ioni...
The interaction between nanoparticles dispersed in a fluid and nanopores is governed by the interpla...
We report experimentally the transport of an unfolded protein through a narrow solid-state nanopore ...
Rectification in nanopores is usually achieved by a fixed asymmetry in the pore geometry and charge ...
ABSTRACT: Electrically driven ionic transport of room-temperature ionic liquids (RTILs) through nano...
International audienceSingle macromolecule detection through a single nanopore is based on resistive...
Signal delay is a crucial factor in resistive pulse analyses using low-thickness-to-diameter aspect-...
International audienceWe use solid-state nanopores to study the dynamics of single electrically char...
International audienceWe report experimentally the dynamic properties of the entry and transport of ...
In this dissertation, I discuss various aspects of the dynamics of charged particles in nanopore sys...
From electrical current to ecological and biological systems, fluctuations are characterised based o...
Tunable nanopores fabricated in elastomeric membranes have been used to study the dependence of ioni...
The interaction between nanoparticles dispersed in a fluid and nanopores is governed by the interpla...
We report experimentally the transport of an unfolded protein through a narrow solid-state nanopore ...
Rectification in nanopores is usually achieved by a fixed asymmetry in the pore geometry and charge ...
ABSTRACT: Electrically driven ionic transport of room-temperature ionic liquids (RTILs) through nano...
International audienceSingle macromolecule detection through a single nanopore is based on resistive...
Signal delay is a crucial factor in resistive pulse analyses using low-thickness-to-diameter aspect-...