Within the past years there has been much effort in developing and improving new techniques for the nanoscale patterning of functional materials used in promising applications like nano(opto)electronics. Here a high-resolution soft lithography technique—nanomolding in capillaries (NAMIC)—is demonstrated. Composite PDMS stamps with sub-100 nm features are fabricated by nanoimprint lithography to yield nanomolds for NAMIC. NAMIC is used to pattern different functional materials such as fluorescent dyes, proteins, nanoparticles, thermoplastic polymers, and conductive polymers at the nanometer scale over large areas. These results show that NAMIC is a simple, versatile, low-cost, and high-throughput nanopatterning tool
We developed a hybrid nanoimprint-soft lithography technique with sub-15 nm resolution. It is capabl...
Herein, we describe a novel colloidal lithographic strategy for the stepwise patterning of planar su...
We describe a nanomoulding technique which allows low-cost nanoscale patterning of functional materi...
Soft UV nanoimprint lithography and reactive ion etch techniques have been used to pattern high dens...
Owing to the superior dielectric property of aluminum oxide, precise patterning of self-assembled mo...
The implementation of high-resolution polymer templates fabricated by capillary force lithography (C...
We report on the high-resolution patterning of III–V semiconductors through polymeric masks by a sof...
Molecular multifMolecular multifunctional materials have potential applications in many fields of te...
This PhD thesis addresses two major issues: 1) Fabricating nanometer-scale patterns of functional ma...
The structure and chemistry of nanoparticles and polymers are interesting for applications in electr...
The aim of this thesis was establishing Soft Lithography, mainly Microcontact Printing, as a powerfu...
This PhD thesis addresses two major issues:\ud 1) Fabricating nanometer-scale patterns of functional...
International audienceCombining the nanoporous anodic aluminum oxide (AAO) technique with soft litho...
Fast, low-cost, reliable, and multi-component nanopatterning techniques for functional colloidal nan...
The development of nanodevices demands for patterning methods in the nanoscale. To bring nanodevices...
We developed a hybrid nanoimprint-soft lithography technique with sub-15 nm resolution. It is capabl...
Herein, we describe a novel colloidal lithographic strategy for the stepwise patterning of planar su...
We describe a nanomoulding technique which allows low-cost nanoscale patterning of functional materi...
Soft UV nanoimprint lithography and reactive ion etch techniques have been used to pattern high dens...
Owing to the superior dielectric property of aluminum oxide, precise patterning of self-assembled mo...
The implementation of high-resolution polymer templates fabricated by capillary force lithography (C...
We report on the high-resolution patterning of III–V semiconductors through polymeric masks by a sof...
Molecular multifMolecular multifunctional materials have potential applications in many fields of te...
This PhD thesis addresses two major issues: 1) Fabricating nanometer-scale patterns of functional ma...
The structure and chemistry of nanoparticles and polymers are interesting for applications in electr...
The aim of this thesis was establishing Soft Lithography, mainly Microcontact Printing, as a powerfu...
This PhD thesis addresses two major issues:\ud 1) Fabricating nanometer-scale patterns of functional...
International audienceCombining the nanoporous anodic aluminum oxide (AAO) technique with soft litho...
Fast, low-cost, reliable, and multi-component nanopatterning techniques for functional colloidal nan...
The development of nanodevices demands for patterning methods in the nanoscale. To bring nanodevices...
We developed a hybrid nanoimprint-soft lithography technique with sub-15 nm resolution. It is capabl...
Herein, we describe a novel colloidal lithographic strategy for the stepwise patterning of planar su...
We describe a nanomoulding technique which allows low-cost nanoscale patterning of functional materi...