Capillary-assisted particle assembly (CAPA) in predefined topographical templates is a scalable method for the precise positioning of nanoscale objects on various surfaces. High-resolution CAPA templates are typically fabricated by expensive electron-beam lithography and are used for a single assembly process. To increase the scalability and reduce the costs of the CAPA technique, the fabrication and characterization of reusable templates with nanoscale funnel-shaped traps for repetitive precise nanoparticle placement are demonstrated. The yield of the first assembly of 100 nm gold nanoparticles (AuNPs) is as high as 94% with a median position offset of about 10 nm. The subsequent transfer process of the AuNPs from the silicon assembly temp...
We present a technique for the organization of pre-synthesized nanoparticles on hard substrates, usi...
International audienceA novel technology is reported to immobilize different types of particles or c...
ME450 Capstone Design and Manufacturing Experience: Winter 2010The objective of this project is to d...
New developments in nanoparticle synthesis is opening new opportunities in bottom-up assembly. Indee...
Signicant progress has been made to synthesis colloidal particles capable of controlling shape , dim...
International audienceThe fabrication of high quality nanophotonic surfaces for integration in optoe...
We present a high-confinement approach to capillarity-assisted particle assembly (CAPA) enabling bot...
The fabrication of metallic nanostructures on stretchable substrates enables specific applications t...
We introduce capillary transfer lithography for the fabrication of ordered microscopic arrays from n...
International audienceCapillary force assembly (CFA) of colloidal particles usually results in close...
Deterministic positioning and assembly of colloidal nanoparticles (NPs) onto substrates is a core re...
In this work, we demonstrate a nanofabrication technique based on thermal scanning probe lithography...
The nanoengineering of particles is of interest for both fundamental and applied science. How partic...
Directed self-assembly of nanoparticles (DSA-n) holds great potential for device miniaturization in ...
Predetermined and selective placement of nanoparticles onto large-area substrates with nanometre-sca...
We present a technique for the organization of pre-synthesized nanoparticles on hard substrates, usi...
International audienceA novel technology is reported to immobilize different types of particles or c...
ME450 Capstone Design and Manufacturing Experience: Winter 2010The objective of this project is to d...
New developments in nanoparticle synthesis is opening new opportunities in bottom-up assembly. Indee...
Signicant progress has been made to synthesis colloidal particles capable of controlling shape , dim...
International audienceThe fabrication of high quality nanophotonic surfaces for integration in optoe...
We present a high-confinement approach to capillarity-assisted particle assembly (CAPA) enabling bot...
The fabrication of metallic nanostructures on stretchable substrates enables specific applications t...
We introduce capillary transfer lithography for the fabrication of ordered microscopic arrays from n...
International audienceCapillary force assembly (CFA) of colloidal particles usually results in close...
Deterministic positioning and assembly of colloidal nanoparticles (NPs) onto substrates is a core re...
In this work, we demonstrate a nanofabrication technique based on thermal scanning probe lithography...
The nanoengineering of particles is of interest for both fundamental and applied science. How partic...
Directed self-assembly of nanoparticles (DSA-n) holds great potential for device miniaturization in ...
Predetermined and selective placement of nanoparticles onto large-area substrates with nanometre-sca...
We present a technique for the organization of pre-synthesized nanoparticles on hard substrates, usi...
International audienceA novel technology is reported to immobilize different types of particles or c...
ME450 Capstone Design and Manufacturing Experience: Winter 2010The objective of this project is to d...