Using Femtosecond Laser to Fabricate the Interior 3D Technical Communication Structures of Polymeric Microfluidic Biochips
نویسندگان
چکیده
We have successfully employed femtosecond laser to craft microstructures on polymeric substrate to imbed micro-mixiers. Since the laser pulse is ultra-short, the heat affected zone is not significant. Therefore the thermal melting damage is not as severe as that using continuous carbon dioxide laser. As a result, using femtosecond laser the fabrications of reproducible and defined micro-structures are able to accomplish. These structures can be used to generate micro-vortices using the mechanisms of induced electro-osmosis, one unique technique developed in our laboratory. The dimensional reproducibility of microstructures was observed with scanning electron microscopy. In addition, using attenuation total reflectance Fourier transform infrared spectroscopy (ATR-FTIR) to inspect the laser fabricated surface of polymeric substrate, we have acquired the spectrum of polymer moieties showing that photothermal effects are also more pronounced than photochemical effects in the fabrication processes to avoid surface reactions. An example of a micro-mixer with three dimensional microstructures about 800 μm x 400 μm x 65 μm on the last slide for transparent glycerol and glycerol with red dyes mixing is presented.
منابع مشابه
Ultrafast Laser Fabrication of Functional Biochips: New Avenues for Exploring 3D Micro- and Nano-Environments
Lab-on-a-chip biological platforms have been intensively developed during the last decade since emerging technologies have offered possibilities to manufacture reliable devices with increased spatial resolution and 3D configurations. These biochips permit testing chemical reactions with nanoliter volumes, enhanced sensitivity in analysis and reduced consumption of reagents. Due to the high peak...
متن کاملFeasibility of using smartphones in the reconstruction of the interior architecture of the building without using interior control points
The limitation of land in big cities has caused the vertical growth of cities; for example, high-rise buildings on the ground and underground urban facilities can be mentioned. This restriction has increased the value of land in cities, and on the other hand, it has created some new and complicated technical and legal aspects in the cadastral issues. To respond to these new technical and legal ...
متن کاملFemtosecond pulsed laser micromachining of glass substrates with application to microfluidic devices.
We describe a technique for surface and subsurface micromachining of glass substrates by using tightly focused femtosecond laser pulses at a wavelength of 1660 nm. A salient feature of pulsed laser micromachining is its ability to drill subsurface tunnels into glass substrates. To demonstrate a potential application of this micromachining technique, we fabricate simple microfluidic structures o...
متن کاملCompact 3D Microfluidic Channel Structures Embedded in Glass Fabricated by Femtosecond Laser Direct Writing
We demonstrate rapid fabrication of complex three-dimensional (3D) microfluidic channels with lengths up to ~6.0 cm within a tiny volume down to ~80 nl in glass substrates by femtosecond laser direct writing, which, to the best of our knowledge, is the longest microfluidic channel directly embedded in glass by femtosecond laser microprocessing. The fabrication mainly includes the following two ...
متن کاملFault Tolerant DNA Computing Based on Digital Microfluidic Biochips
Historically, DNA molecules have been known as the building blocks of life, later on in 1994, Leonard Adelman introduced a technique to utilize DNA molecules for a new kind of computation. According to the massive parallelism, huge storage capacity and the ability of using the DNA molecules inside the living tissue, this type of computation is applied in many application areas such as me...
متن کامل