This article describes the fabrication of microfluidic networks (\u3bcFNs) from a commercially available (styrene)-(ethylene/butylene)-(styrene) (SEBS) block copolymer (BCP). The unique combination of hard and elastomeric properties provided by this material promotes high-throughput replication of fluidic structures using thermoforming technologies, while retaining the advantage of quick and easy assembly via conformal contact, as commonly achieved for devices fabricated from poly(dimethylsiloxane (PDMS). We employ Versaflex CL30, which is optically transparent, available at low cost (e.g., $2.50/Lbs), and likely to be compatible with a broad range of biological species. We demonstrate excellent fidelity in replication of fluidic structures...
Over the past decade, thermoplastics have been used as alternative substrates to glass and Si for mi...
Polystyrene (PS) is one of the most commonly used thermoplastic materials worldwide and plays a ubiq...
Transparent surfaces within microfluidic devices are essential for accurate quantification of chemic...
International audienceOne of the most important areas of research on microfluidic technologies focus...
International audienceOne of the most important areas of research on microfluidic technologies focus...
International audienceOne of the most important areas of research on microfluidic technologies focus...
International audienceOne of the most important areas of research on microfluidic technologies focus...
One of the most important area of research in microfluidic technologies focuses on the identificatio...
Abstract A novel fluorinated soft thermoplastic elastomer (sTPE) for microfluidics is presented. It ...
Abstract A novel fluorinated soft thermoplastic elastomer (sTPE) for microfluidics is presented. It ...
Abstract A novel fluorinated soft thermoplastic elastomer (sTPE) for microfluidics is presented. It ...
Microfluidics has emerged as a valuable tool for the high-resolution patterning of biological probes...
Microfluidics is now moving into a developmental stage where basic discoveries are being transitione...
Since its emergence, microfluidic technology has been demonstrated to be a powerful tool in biology ...
Microfluidic devices have been a rapidly increasing area of study since the mid 1990s. Such devices ...
Over the past decade, thermoplastics have been used as alternative substrates to glass and Si for mi...
Polystyrene (PS) is one of the most commonly used thermoplastic materials worldwide and plays a ubiq...
Transparent surfaces within microfluidic devices are essential for accurate quantification of chemic...
International audienceOne of the most important areas of research on microfluidic technologies focus...
International audienceOne of the most important areas of research on microfluidic technologies focus...
International audienceOne of the most important areas of research on microfluidic technologies focus...
International audienceOne of the most important areas of research on microfluidic technologies focus...
One of the most important area of research in microfluidic technologies focuses on the identificatio...
Abstract A novel fluorinated soft thermoplastic elastomer (sTPE) for microfluidics is presented. It ...
Abstract A novel fluorinated soft thermoplastic elastomer (sTPE) for microfluidics is presented. It ...
Abstract A novel fluorinated soft thermoplastic elastomer (sTPE) for microfluidics is presented. It ...
Microfluidics has emerged as a valuable tool for the high-resolution patterning of biological probes...
Microfluidics is now moving into a developmental stage where basic discoveries are being transitione...
Since its emergence, microfluidic technology has been demonstrated to be a powerful tool in biology ...
Microfluidic devices have been a rapidly increasing area of study since the mid 1990s. Such devices ...
Over the past decade, thermoplastics have been used as alternative substrates to glass and Si for mi...
Polystyrene (PS) is one of the most commonly used thermoplastic materials worldwide and plays a ubiq...
Transparent surfaces within microfluidic devices are essential for accurate quantification of chemic...