Solid state nanopores are single-molecular devices governed by nanoscale physics with a broad potential for technological applications. However, the control of translocation speed in these systems is still limited. Ionic liquids are molten salts which are commonly used as alternate solvents enabling the regulation of the chemical and physical interactions on solid-liquid interfaces. While their combination can be challenging to the understanding of nanoscopic processes, there has been limited attempts on bringing these two together. While summarizing the state of the art and open questions in these fields, several major advances are presented with a perspective on the next steps in the investigations of ionic-liquid filled nanopores, both f...
Studying ion transport in nanoporous materials is crucial to a wide range of energy and environmenta...
We report a strategy to enhance the ionic mobility in an emerging class of gels, based on robust nan...
Nanopores are small (1–100 nm diameter) holes/channels formed in biological membranes (Fig. 1) or fa...
Solid state nanopores are single-molecular devices governed by nanoscale physics with a broad potent...
International audienceFundamental understanding of ionic transport at the nanoscale is essential for...
Ionic liquids (ILs) are considered well suited alternatives for conventional electrolytes in next-ge...
Ionic current transport and nanopores go hand in hand. Ionic current has been used to investigate pr...
ABSTRACT: Electrically driven ionic transport of room-temperature ionic liquids (RTILs) through nano...
This thesis describes experimental work on a novel type of devices capable of detecting single-(bio)...
Nanopores are nanometer sized openings that are the connection between two electrolyte filled reserv...
Understanding and controlling the individual behavior of nanoscopic matter in liquids, the environme...
We describe the use of asymmetric nanopores decorated with crown ethers for constructing robust sign...
A detailed characterization of the physics of novel nanopore systems has the potential to revolution...
abstract: In the last few years, significant advances in nanofabrication have allowed tailoring of s...
In recent years, advances in nanotechnology have allowed researchers to manufacture pores in synthet...
Studying ion transport in nanoporous materials is crucial to a wide range of energy and environmenta...
We report a strategy to enhance the ionic mobility in an emerging class of gels, based on robust nan...
Nanopores are small (1–100 nm diameter) holes/channels formed in biological membranes (Fig. 1) or fa...
Solid state nanopores are single-molecular devices governed by nanoscale physics with a broad potent...
International audienceFundamental understanding of ionic transport at the nanoscale is essential for...
Ionic liquids (ILs) are considered well suited alternatives for conventional electrolytes in next-ge...
Ionic current transport and nanopores go hand in hand. Ionic current has been used to investigate pr...
ABSTRACT: Electrically driven ionic transport of room-temperature ionic liquids (RTILs) through nano...
This thesis describes experimental work on a novel type of devices capable of detecting single-(bio)...
Nanopores are nanometer sized openings that are the connection between two electrolyte filled reserv...
Understanding and controlling the individual behavior of nanoscopic matter in liquids, the environme...
We describe the use of asymmetric nanopores decorated with crown ethers for constructing robust sign...
A detailed characterization of the physics of novel nanopore systems has the potential to revolution...
abstract: In the last few years, significant advances in nanofabrication have allowed tailoring of s...
In recent years, advances in nanotechnology have allowed researchers to manufacture pores in synthet...
Studying ion transport in nanoporous materials is crucial to a wide range of energy and environmenta...
We report a strategy to enhance the ionic mobility in an emerging class of gels, based on robust nan...
Nanopores are small (1–100 nm diameter) holes/channels formed in biological membranes (Fig. 1) or fa...