International audienceA hybrid process compatible with reel-to-reel manufacturing is developed for ultra low-cost large-scale manufacture of disposable microfluidic chips. It combines ultra-short laser microstructuring and lamination technology. Microchannels in polyester foils were formed using focused, high-intensity femtosecond laser pulses. Lamination using a commercial SU8-epoxy resist layer was used to seal the microchannel layer and cover foil. This hybrid process also enables heterogeneous material structuration and integration
Microfluidic optical stretchers are valuable optofluidic devices for studying single cell mechanical...
Micro Electro Mechanical Systems (MEMS) and microfluidic devices have found numerous applications in...
The extremely high peak intensity associated with ultrashort pulse width of femtosecond laser allows...
A hybrid process compatible with reel-to-reel manufacturing is developed for ultra low-cost large-s...
The femtosecond (fs) laser is a well-established tool in material processing. Due to highly nonlinea...
Femtosecond laser ablation of polymeric substrates for the fabrication of microfluidic channel
We have introduced a new hybrid fabrication method for lab-on-a-chip devices through the combination...
We have introduced a new hybrid fabrication method for lab-on-a-chip devices through the combination...
Abstract: The concept of microfluidics on foil opens up new opportunities for combining the advantag...
In this work we present a micro manufacturing platform for the production of polymeric microfluidic ...
Femtosecond laser ablation and characterization of microchannels in poly(methyl methacrylate) for fa...
Direct writing of multi-depth microchannel branching networks into a silicon wafer with femtosecond ...
The concept of microfluidics on foil opens up new opportunities for combining the advantages of havi...
An effective development platform for custom lab-on-a-chip and lab-on-a-foil solutions has been rega...
International audienceThe concept of microfluidics on foil opens up new opportunities for combining ...
Microfluidic optical stretchers are valuable optofluidic devices for studying single cell mechanical...
Micro Electro Mechanical Systems (MEMS) and microfluidic devices have found numerous applications in...
The extremely high peak intensity associated with ultrashort pulse width of femtosecond laser allows...
A hybrid process compatible with reel-to-reel manufacturing is developed for ultra low-cost large-s...
The femtosecond (fs) laser is a well-established tool in material processing. Due to highly nonlinea...
Femtosecond laser ablation of polymeric substrates for the fabrication of microfluidic channel
We have introduced a new hybrid fabrication method for lab-on-a-chip devices through the combination...
We have introduced a new hybrid fabrication method for lab-on-a-chip devices through the combination...
Abstract: The concept of microfluidics on foil opens up new opportunities for combining the advantag...
In this work we present a micro manufacturing platform for the production of polymeric microfluidic ...
Femtosecond laser ablation and characterization of microchannels in poly(methyl methacrylate) for fa...
Direct writing of multi-depth microchannel branching networks into a silicon wafer with femtosecond ...
The concept of microfluidics on foil opens up new opportunities for combining the advantages of havi...
An effective development platform for custom lab-on-a-chip and lab-on-a-foil solutions has been rega...
International audienceThe concept of microfluidics on foil opens up new opportunities for combining ...
Microfluidic optical stretchers are valuable optofluidic devices for studying single cell mechanical...
Micro Electro Mechanical Systems (MEMS) and microfluidic devices have found numerous applications in...
The extremely high peak intensity associated with ultrashort pulse width of femtosecond laser allows...