AbstractSU-8 and polydimethylsiloxane (PDMS) are both transparent materials with properties very convenient for rapid prototyping of microfluidic systems. However, previous efforts of combining these two materials failed due to poor adhesion between them. Herein, we introduce a promising low-temperature technique (< 100 °C) to irreversibly bond two or more structured layers of SU-8 and PDMS to create hybrid stacks. This offers new possibilities in design and fabrication of enclosed three-dimensional microstructures and microchannels with simple soft-lithography techniques. The potential of this method is demonstrated by the fabrication of a new version of our microfluidic sensor cartridge that was reported recently1
The development and growth of microfluidics has been mainly based on various novel fabrication techn...
International audienceThe low-cost prototyping of complex lab-on-chip systems requires the developme...
SU-8 is largely used to make microfluidic molds or components, but mainly for producing high-precisi...
In this article, a novel hybrid fabrication technology is presented that uses both a flexible polyme...
This paper reports a versatile and irreversible bonding method for poly(dimethylsiloxane) (PDMS) and...
A simple method of irreversibly sealing SU-8 microfluidic channels using PDMS is reported in this pa...
We present a method to bond unstructured and structured SU-8 films down to sub-micron thicknesses on...
A novel technique for bonding polymer substrates using PDMS-interface bonding is presented in this p...
In order to properly manipulate liquids into microfluidic networks, an accurate sealing of the devic...
Microfluidic systems have received increased attention due to their wide variety of applications, fr...
To the best of our knowledge, this paper outlines for the first time high adhesion and hybrid irreve...
This paper describes the fabrication procedure for a hybrid elastomer-Si structure. The procedure co...
Crosslinked SU-8 is a promising material for microfluidic and bio-MEMs applications because of its e...
Polydimethylsiloxane (PDMS) has many desirable features for microfluidics applications, but its hydr...
PDMS is one of the most common materials used for the flow delivery in the microfluidics chips, sinc...
The development and growth of microfluidics has been mainly based on various novel fabrication techn...
International audienceThe low-cost prototyping of complex lab-on-chip systems requires the developme...
SU-8 is largely used to make microfluidic molds or components, but mainly for producing high-precisi...
In this article, a novel hybrid fabrication technology is presented that uses both a flexible polyme...
This paper reports a versatile and irreversible bonding method for poly(dimethylsiloxane) (PDMS) and...
A simple method of irreversibly sealing SU-8 microfluidic channels using PDMS is reported in this pa...
We present a method to bond unstructured and structured SU-8 films down to sub-micron thicknesses on...
A novel technique for bonding polymer substrates using PDMS-interface bonding is presented in this p...
In order to properly manipulate liquids into microfluidic networks, an accurate sealing of the devic...
Microfluidic systems have received increased attention due to their wide variety of applications, fr...
To the best of our knowledge, this paper outlines for the first time high adhesion and hybrid irreve...
This paper describes the fabrication procedure for a hybrid elastomer-Si structure. The procedure co...
Crosslinked SU-8 is a promising material for microfluidic and bio-MEMs applications because of its e...
Polydimethylsiloxane (PDMS) has many desirable features for microfluidics applications, but its hydr...
PDMS is one of the most common materials used for the flow delivery in the microfluidics chips, sinc...
The development and growth of microfluidics has been mainly based on various novel fabrication techn...
International audienceThe low-cost prototyping of complex lab-on-chip systems requires the developme...
SU-8 is largely used to make microfluidic molds or components, but mainly for producing high-precisi...