Here we demonstrate the fabrication of porous networks through self-assembly of polyelectrolytes inside nanoconfined geometries. For this purpose, nanochannel membranes fabricated through ion track-etching technique are decorated with an alternate layer-by-layer (LbL) assembly of cationic blend of poly(allylamine hydrochloride)/poly(4-vinylpyridine) (PAH/PVP) and anionic poly(acrylic acid) (PAA) polyelectrolytes. The porous network is prepared by first cross-linking the electrostatic element (PAH and PAA), followed by the removal of hydrogen-bonded polymer (PVP) from the multilayers. In membranes with a single nanochannel, the modification process is monitored by measuring changes in electrolyte ion flux, while the membrane is separating th...
We study the layer-by-layer (LbL) deposition of a pair of strong polyelectrolytes within the nanopor...
In this work we presented a general strategy for the fabrication of membranes with well-defined ions...
We designed and characterized a cylindrical nanopore that exhibits high electrochemical current rect...
Here we demonstrate the fabrication of porous networks through self-assembly of polyelectrolytes ins...
Inspired by biological ion channels embedded in cell membranes, which enable the selective transport...
Nanochannels fabricated in ion-tracked polymer membranes have a great range of applications in biote...
Molecular design of ionic current rectifiers created on the basis of single conical nanopores is rec...
We describe simple and robust methods that can be used for microfabricating nanoporous materials as ...
Our laboratory focuses on developing spatially localized chemistries which can produce structures of...
The search for the next generation of highly ion-conducting polymer electrolyte membranes has been a...
This thesis is focused on the potential applications of ion track-etched nanopores in polymeric memb...
Layer-by-layer (LbL) deposition of polyelectrolytes within nanopores in terms of the pore size and t...
The control of the morphology, as well as the physical and chemical properties, of nanopores is a ke...
Track etched membranes are porous systems consisting of a thin polymer foil with channels from surfa...
[[abstract]]Due to its capability of mimicking ion channels in living organisms, the ionic transport...
We study the layer-by-layer (LbL) deposition of a pair of strong polyelectrolytes within the nanopor...
In this work we presented a general strategy for the fabrication of membranes with well-defined ions...
We designed and characterized a cylindrical nanopore that exhibits high electrochemical current rect...
Here we demonstrate the fabrication of porous networks through self-assembly of polyelectrolytes ins...
Inspired by biological ion channels embedded in cell membranes, which enable the selective transport...
Nanochannels fabricated in ion-tracked polymer membranes have a great range of applications in biote...
Molecular design of ionic current rectifiers created on the basis of single conical nanopores is rec...
We describe simple and robust methods that can be used for microfabricating nanoporous materials as ...
Our laboratory focuses on developing spatially localized chemistries which can produce structures of...
The search for the next generation of highly ion-conducting polymer electrolyte membranes has been a...
This thesis is focused on the potential applications of ion track-etched nanopores in polymeric memb...
Layer-by-layer (LbL) deposition of polyelectrolytes within nanopores in terms of the pore size and t...
The control of the morphology, as well as the physical and chemical properties, of nanopores is a ke...
Track etched membranes are porous systems consisting of a thin polymer foil with channels from surfa...
[[abstract]]Due to its capability of mimicking ion channels in living organisms, the ionic transport...
We study the layer-by-layer (LbL) deposition of a pair of strong polyelectrolytes within the nanopor...
In this work we presented a general strategy for the fabrication of membranes with well-defined ions...
We designed and characterized a cylindrical nanopore that exhibits high electrochemical current rect...