We studied the micropattern fidelity of a Norland Optical Adhesive 81 (NOA81) microsieve made by soft-lithography and laser micromachining. Ablation opens replicated cavities, resulting in three-dimensional (3D) micropores. We previously demonstrated that microsieves can capture cells by passive pumping. Flow, capture yield, and cell survival depend on the control of the micropore geometry and must yield high reproducibility within the device and from device to device. We investigated the NOA81 film thickness, the laser pulse repetition rate, the number of pulses, and the beam focusing distance. For NOA81 films spin-coated between 600 and 1200 rpm, the pulse number controls the breaching of films to form the pore’s aperture and dominates th...
We demonstrate the capability of a laser micromachining workstation for cost-effective manufacturing...
The release of individual polymer micropallets from glass substrates using highly focused laser puls...
The possibility of fabricating micrometric pore size membranes is gaining great interest in many app...
We studied the micropattern fidelity of a Norland Optical Adhesive 81 (NOA81) microsieve made by sof...
Laser surface micro/nanopatterning by particle lens arrays is a well-known technique. Enhanced optic...
We have investigated the laser micromachining of microsieves with 3D micropore geometries. We hypoth...
\u3cp\u3eIn this contribution, we demonstrate that the optical adhesive NOA81 (Norland Products Inc....
Novel glazing with embedded micro-mirrors can significantly reduce the energy consumption due to coo...
Laser patterning on polymeric materials is considered a green and rapid manufacturing process with l...
An excimer laser micromachining system is developed to study the process in fabricating high-aspect-...
Laser micromachining is now a common method of surface modification and machining; utilizing a broad...
<p><b>(a)</b> Schematic illustrations of polymer-substrate-based nanopore device consisting of a mic...
Laser ablation with nanosecond-pulsed Nd:YAG laser irradiation combined with anisotropic alkaline et...
The ablation of a polymethyl methacrylate (PMMA) substrate with a 248-nm long-pulsed KrF excimer las...
MasterProcessing of several biomaterials, particularly enamel, MACOR and gelatin is studied. Enamel ...
We demonstrate the capability of a laser micromachining workstation for cost-effective manufacturing...
The release of individual polymer micropallets from glass substrates using highly focused laser puls...
The possibility of fabricating micrometric pore size membranes is gaining great interest in many app...
We studied the micropattern fidelity of a Norland Optical Adhesive 81 (NOA81) microsieve made by sof...
Laser surface micro/nanopatterning by particle lens arrays is a well-known technique. Enhanced optic...
We have investigated the laser micromachining of microsieves with 3D micropore geometries. We hypoth...
\u3cp\u3eIn this contribution, we demonstrate that the optical adhesive NOA81 (Norland Products Inc....
Novel glazing with embedded micro-mirrors can significantly reduce the energy consumption due to coo...
Laser patterning on polymeric materials is considered a green and rapid manufacturing process with l...
An excimer laser micromachining system is developed to study the process in fabricating high-aspect-...
Laser micromachining is now a common method of surface modification and machining; utilizing a broad...
<p><b>(a)</b> Schematic illustrations of polymer-substrate-based nanopore device consisting of a mic...
Laser ablation with nanosecond-pulsed Nd:YAG laser irradiation combined with anisotropic alkaline et...
The ablation of a polymethyl methacrylate (PMMA) substrate with a 248-nm long-pulsed KrF excimer las...
MasterProcessing of several biomaterials, particularly enamel, MACOR and gelatin is studied. Enamel ...
We demonstrate the capability of a laser micromachining workstation for cost-effective manufacturing...
The release of individual polymer micropallets from glass substrates using highly focused laser puls...
The possibility of fabricating micrometric pore size membranes is gaining great interest in many app...