[[abstract]]This paper proposes a novel method to fabricate multi-layers of embedded micro fluidic structures by simply employing time-controlled UV exposure on thick SU-8 resist and an anti-reflection coating on the bottom surface to eliminate the reflection light induced exposure. Test results show that the top wall thickness of embedded channels can be well controlled to a resolution of 2 μm for a UV dose of 120-190 mJ/cm2. Stacked channels have also been successfully fabricated and show no interference on the bottom structures when exposing the top structures. This simple and inexpensive method can be applied to fabricate multi-layers of complex fluidic systems, for applications such as μTAS, inkjet printheads, capillary electrophoresis...
Most polymer-replica-based microfluidic devices are mainly fabricated by using standard soft-lithogr...
We have developed a sequential stereolithographic co-printing process using two different resins for...
This paper describes an innovative yet straightforward fabrication technique to create three-dimensi...
[[abstract]]This paper proposes a novel method to fabricate multi-layers, embedded micro fluidic str...
[[abstract]]This paper proposes a novel method to fabricate multi-layers of embedded micro fluidic s...
[[abstract]]In this paper, we presents a novel and simple method to fabricate embedded micro channel...
[[abstract]]This paper proposes a novel technique for fabricating microchannels in SU-8 by inserting...
International audienceMicrofluidic devices are currently being used in many types of biochemical mic...
We investigated the application of two technologies for the fabrication of rectangular microchannels...
In this work, we propose an innovative approach to the fabrication of a complete micro/nano fluidic ...
The development and growth of microfluidics has been mainly based on various novel fabrication techn...
A straightforward method for microfluidic devices fabrication using sunlight as the ultraviolet (UV)...
© 2019 by ASME. Opto-microfluidic methods have advantages for manufacturing complex shapes or struct...
Research in microfluidic biosensors has led to dramatic improvements in sensitivities. Very few exam...
Paper Micro -fluidic Devices is continuously being researched and developed since it provides abu...
Most polymer-replica-based microfluidic devices are mainly fabricated by using standard soft-lithogr...
We have developed a sequential stereolithographic co-printing process using two different resins for...
This paper describes an innovative yet straightforward fabrication technique to create three-dimensi...
[[abstract]]This paper proposes a novel method to fabricate multi-layers, embedded micro fluidic str...
[[abstract]]This paper proposes a novel method to fabricate multi-layers of embedded micro fluidic s...
[[abstract]]In this paper, we presents a novel and simple method to fabricate embedded micro channel...
[[abstract]]This paper proposes a novel technique for fabricating microchannels in SU-8 by inserting...
International audienceMicrofluidic devices are currently being used in many types of biochemical mic...
We investigated the application of two technologies for the fabrication of rectangular microchannels...
In this work, we propose an innovative approach to the fabrication of a complete micro/nano fluidic ...
The development and growth of microfluidics has been mainly based on various novel fabrication techn...
A straightforward method for microfluidic devices fabrication using sunlight as the ultraviolet (UV)...
© 2019 by ASME. Opto-microfluidic methods have advantages for manufacturing complex shapes or struct...
Research in microfluidic biosensors has led to dramatic improvements in sensitivities. Very few exam...
Paper Micro -fluidic Devices is continuously being researched and developed since it provides abu...
Most polymer-replica-based microfluidic devices are mainly fabricated by using standard soft-lithogr...
We have developed a sequential stereolithographic co-printing process using two different resins for...
This paper describes an innovative yet straightforward fabrication technique to create three-dimensi...