Laser-microstructured double-sided biocompatible adhesive tapes as intermediated bonding layers are potential candidates for hybrid integration of a disposable biochip. In the EU-PHOCNOSIS project, such thin adhesive tapes are proposed to integrate the polymer microfluidic system with the optical sensor chip. Three laser-assisted structuring methods are investigated to efficiently transfer microchannel patterns to the adhesive tape at room temperature. The test structure design consists of a single channel with 400 µm wide, 30 mm length and two circular receivers with 2 mm radius. The best structuring results are found by using a UV picosecond laser
This paper reviews applications of laser-based techniques to the fabrication of microfluidic devices...
This work presents patterning of thick (10–50 µm) hybrid polymer structures of ORMOCER® by laser dir...
This paper reports novel ways to bond bio-based polylactic acid (PLA) substrates for the production ...
Laser-microstructured double-sided biocompatible adhesive tapes as intermediated bonding layers are ...
Portable high-sensitivity biosensors exhibit a growing demand in healthcare, food industry and envir...
The need for point-of-care or point-of-use diagnostic sensors in the health care industry as well as...
In this paper, the realization of microfluidic packages by bonding several stacked layers of microst...
Microfluidic devices and biochips offer miniaturized laboratories for the separation, reaction, and ...
Microfluidic devices and biochips offer miniaturized laboratories for the separation, reaction, and ...
This paper reviews applications of laser-based techniques to the fabrication of microfluidic devices...
An integrated technology chain for laser-microstructuring and bonding of polymer foils for fast, fle...
We report a fast and simple prototyping method to fabricate polymer-based microfluidic chips using D...
Researchers have developed techniques for multi-layered fabrication of microfluidic chips which all...
Researchers have developed techniques for multi-layered fabrication of microfluidic chips which all...
This paper reports novel ways to bond bio-based polylactic acid (PLA) substrates for the production ...
This paper reviews applications of laser-based techniques to the fabrication of microfluidic devices...
This work presents patterning of thick (10–50 µm) hybrid polymer structures of ORMOCER® by laser dir...
This paper reports novel ways to bond bio-based polylactic acid (PLA) substrates for the production ...
Laser-microstructured double-sided biocompatible adhesive tapes as intermediated bonding layers are ...
Portable high-sensitivity biosensors exhibit a growing demand in healthcare, food industry and envir...
The need for point-of-care or point-of-use diagnostic sensors in the health care industry as well as...
In this paper, the realization of microfluidic packages by bonding several stacked layers of microst...
Microfluidic devices and biochips offer miniaturized laboratories for the separation, reaction, and ...
Microfluidic devices and biochips offer miniaturized laboratories for the separation, reaction, and ...
This paper reviews applications of laser-based techniques to the fabrication of microfluidic devices...
An integrated technology chain for laser-microstructuring and bonding of polymer foils for fast, fle...
We report a fast and simple prototyping method to fabricate polymer-based microfluidic chips using D...
Researchers have developed techniques for multi-layered fabrication of microfluidic chips which all...
Researchers have developed techniques for multi-layered fabrication of microfluidic chips which all...
This paper reports novel ways to bond bio-based polylactic acid (PLA) substrates for the production ...
This paper reviews applications of laser-based techniques to the fabrication of microfluidic devices...
This work presents patterning of thick (10–50 µm) hybrid polymer structures of ORMOCER® by laser dir...
This paper reports novel ways to bond bio-based polylactic acid (PLA) substrates for the production ...