The fabrication of complex, three-dimensional microscale shapes that can be replicated over large surfaces is an ongoing challenge, albeit one with a wide range of possible applications such as engineered surfaces with tuned wetting properties, scaffolds for cell studies, or surfaces with tailored optical properties. In this work, we use a two-step femtosecond laser direct-write technique and wet-etching process to fabricate monolithic glass micromolds with complex three-dimensional surface topologies, and demonstrate the replication of these structures in a soft polymer (polydimethylsiloxane, PDMS). To estimate the forces experienced during the demolding for one representative structure, we use a combination of two models – a simple linear...
In the last decades, the femtosecond laser micromachining of glass has attracted a lot of attention ...
We report three-dimensional laser microfabrication, which enables microstructuring of materials on t...
We report a rapid laser-based method for structuring polydimethylsiloxane (PDMS) on the micron-scale...
The fabrication of complex, three-dimensional microscale shapes that can be replicated over large su...
The use of low-energy femtosecond laser beam combined with chemical etching has been proven to be an...
We demonstrate the demolding of topologically complex three-dimensional elastomeric microstructures ...
Flexures are components of micro-mechanisms efficiently replacing classical multi-part joints found ...
We demonstrate the fabrication of a 3D polymer/glass micromechanical sensor by combining two femtose...
Femtosecond laser machining is a direct-write lithography technique by which user-defined patterns a...
We review applications of photopolymerization and photodamage by tightly focused picosecond and femt...
We report the fabrication of complex 3D microstructures in silica and polymethylmethacrylate glass b...
We report three-dimensional laser microfabrication, which enables microstructuring of materials on t...
In the last decades, the femtosecond laser micromachining of glass has attracted a lot of attention ...
We report three-dimensional laser microfabrication, which enables microstructuring of materials on t...
We report a rapid laser-based method for structuring polydimethylsiloxane (PDMS) on the micron-scale...
The fabrication of complex, three-dimensional microscale shapes that can be replicated over large su...
The use of low-energy femtosecond laser beam combined with chemical etching has been proven to be an...
We demonstrate the demolding of topologically complex three-dimensional elastomeric microstructures ...
Flexures are components of micro-mechanisms efficiently replacing classical multi-part joints found ...
We demonstrate the fabrication of a 3D polymer/glass micromechanical sensor by combining two femtose...
Femtosecond laser machining is a direct-write lithography technique by which user-defined patterns a...
We review applications of photopolymerization and photodamage by tightly focused picosecond and femt...
We report the fabrication of complex 3D microstructures in silica and polymethylmethacrylate glass b...
We report three-dimensional laser microfabrication, which enables microstructuring of materials on t...
In the last decades, the femtosecond laser micromachining of glass has attracted a lot of attention ...
We report three-dimensional laser microfabrication, which enables microstructuring of materials on t...
We report a rapid laser-based method for structuring polydimethylsiloxane (PDMS) on the micron-scale...