We present the effects of oxygen on the irreversible bonding of a microchannel using an ultraviolet (UV) curable material of polyurethane acrylate (PUA). Microchannels were fabricated by bonding a top layer with impressions of a microfluidic channel and a bottom layer consisting of a PUA coating on a glass or a polyethylene terephthalate (PET) film substrate. The resulting channel is a homogeneous conduit of the PUA material. To find optimal bonding conditions, the bottom layer was cured under different oxygen concentration and UV exposure time at a constant UV intensity (10 mW cm(-2)). Our experimental and theoretical studies revealed that the channel bonding is severely affected by the concentration of oxygen either in the form of trapped...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2011.Cataloge...
This paper presents a fabrication of polymer microchips with homogeneous material technique due to s...
This work primarily aims to integrate dissolved oxygen sensing capability with a microfluidic platfo...
We present the effects of oxygen on the irreversible bonding of a microchannel using an ultraviolet ...
Rapid prototyping (RP) of microfluidic channels in liquid photopolymers using standard li-thography ...
AbstractPhotopolymerization is one of the most widely used methods for additive manufacturing and mi...
[[abstract]]This paper introduces electrokinetic separation inside fully cross-linked epoxy-based po...
[[abstract]]This paper proposes a novel method to fabricate multi-layers of embedded micro fluidic s...
This project proposes a novel process to integrate a polydimethylsiloxane (PDMS) membrane into a pol...
The present work describes fabrication of novel inorganic microfluidic channels derived from commerc...
[[abstract]]This paper proposes a novel method to fabricate multi-layers, embedded micro fluidic str...
High mechanical rigidity, chemical resistance, and ultraviolet-visible light transmissivity of therm...
Over the past two decades, many innovative microfluidic applications have been explored on PDMS-base...
The development and growth of microfluidics has been mainly based on various novel fabrication techn...
We present a method to bond unstructured and structured SU-8 films down to sub-micron thicknesses on...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2011.Cataloge...
This paper presents a fabrication of polymer microchips with homogeneous material technique due to s...
This work primarily aims to integrate dissolved oxygen sensing capability with a microfluidic platfo...
We present the effects of oxygen on the irreversible bonding of a microchannel using an ultraviolet ...
Rapid prototyping (RP) of microfluidic channels in liquid photopolymers using standard li-thography ...
AbstractPhotopolymerization is one of the most widely used methods for additive manufacturing and mi...
[[abstract]]This paper introduces electrokinetic separation inside fully cross-linked epoxy-based po...
[[abstract]]This paper proposes a novel method to fabricate multi-layers of embedded micro fluidic s...
This project proposes a novel process to integrate a polydimethylsiloxane (PDMS) membrane into a pol...
The present work describes fabrication of novel inorganic microfluidic channels derived from commerc...
[[abstract]]This paper proposes a novel method to fabricate multi-layers, embedded micro fluidic str...
High mechanical rigidity, chemical resistance, and ultraviolet-visible light transmissivity of therm...
Over the past two decades, many innovative microfluidic applications have been explored on PDMS-base...
The development and growth of microfluidics has been mainly based on various novel fabrication techn...
We present a method to bond unstructured and structured SU-8 films down to sub-micron thicknesses on...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2011.Cataloge...
This paper presents a fabrication of polymer microchips with homogeneous material technique due to s...
This work primarily aims to integrate dissolved oxygen sensing capability with a microfluidic platfo...