We report on the fabrication of nanofluidic channels directly buried in silicate glass with transverse widths down to less than 50 nm using three-dimensional (3D) femtosecond laser direct writing. Using this technique, integrated micro-nanofluidic systems have been produced by simultaneously writing micro- and nanofluidic channels arranged into various 3D configurations in glass substrates. The fabricated micro- and nanofluidic systems have been used to demonstrate DNA analysis, e. g. stretching of DNA molecules. Our technique offers new opportunities to develop novel 3D micro-nanofluidic systems for a variety of lab-on-a-chip applications
The ability to integrate micro-channels for fluid transport with optical elements is attractive for ...
The ability to integrate micro-channels for fluid transport with optical elements is attractive for ...
or use of any of the information contained in it must acknowledge this thesis as the source of the q...
We report on controllable production of nanostructures embedded in a porous glass by femtosecond las...
The creation of complex three-dimensional (3D) fluidic systems composed of hollow micro- and nanostr...
Femtosecond laser direct writing is unique in allowing for fabrication of 3D micro- and nanofluidic ...
We demonstrate rapid fabrication of complex three-dimensional (3D) microfluidic channels with length...
The extreme nonlinear interaction betweenfemtosecond laser pulses and large-band-gapmaterials has en...
In the last decades, research and development of microfluidics have made extraordinary progress, sin...
Femtosecond lasers have revolutionized the processing of materials, since their ultrashort pulse wid...
We report on controllable production of nanostructures embedded in a porous glass by femtosecond las...
A femtosecond laser can be used for single or multiple writing processes to create sub 10-μm lines o...
Three-dimensional flow-through microchannels were fabricated inside bulk fused silica glass via ultr...
In the past decade, femtosecond (fs) laser microfabrication has received significant attention becau...
The three-dimensional (3-D) writing capability of a high repetition rate (1 MHz) fiber-amplified fem...
The ability to integrate micro-channels for fluid transport with optical elements is attractive for ...
The ability to integrate micro-channels for fluid transport with optical elements is attractive for ...
or use of any of the information contained in it must acknowledge this thesis as the source of the q...
We report on controllable production of nanostructures embedded in a porous glass by femtosecond las...
The creation of complex three-dimensional (3D) fluidic systems composed of hollow micro- and nanostr...
Femtosecond laser direct writing is unique in allowing for fabrication of 3D micro- and nanofluidic ...
We demonstrate rapid fabrication of complex three-dimensional (3D) microfluidic channels with length...
The extreme nonlinear interaction betweenfemtosecond laser pulses and large-band-gapmaterials has en...
In the last decades, research and development of microfluidics have made extraordinary progress, sin...
Femtosecond lasers have revolutionized the processing of materials, since their ultrashort pulse wid...
We report on controllable production of nanostructures embedded in a porous glass by femtosecond las...
A femtosecond laser can be used for single or multiple writing processes to create sub 10-μm lines o...
Three-dimensional flow-through microchannels were fabricated inside bulk fused silica glass via ultr...
In the past decade, femtosecond (fs) laser microfabrication has received significant attention becau...
The three-dimensional (3-D) writing capability of a high repetition rate (1 MHz) fiber-amplified fem...
The ability to integrate micro-channels for fluid transport with optical elements is attractive for ...
The ability to integrate micro-channels for fluid transport with optical elements is attractive for ...
or use of any of the information contained in it must acknowledge this thesis as the source of the q...